D5.1 Specification of Contract Basic Terms and Conditions

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1 D5.1 Specification of Contract Basic Terms and Conditions Work Package Number: Work Package Title: WP5 Capacity building through acquisition, development and upgrading of research equipment Nature of Deliverable: Report Dissemination Level: Public Version: 1.0 Delivery Date From Annex 1: M06 Principal Authors: Contributing Authors: Internal reviewers: Janusz Sobecki Mariusz Kozioł, Radosław Michalski This project has received funding from the European Union s Seventh Framework Programme for research, technological development and demonstration under grant agreement no [ENGINE].

2 ENGINE D5.1 Specification of Contract Basic Terms and Conditions Version History Version Date Author Changes/reason Initials JS Initial draft of deliverable JS Extended draft JS Inclusion of purchase procedure PB, JS, Corrections and inclusion of equipment description RM, MK, PC, JSz, JSa JS Formatting and further corrections JS, PB First internal review RM, Second internal review PC,JS JS Final Version JS Janusz Sobecki PB Piotr Bródka RM Radosław Michalski MK Mariusz Kozioł MM Marcin Markowski PC Piotr Chynał JSz - Jerzy Szymański JSa - Jerzy Sas - 2 -

3 Table of Contents Version History List of Figures List of Tables Executive Summary Introduction Planned purchases for Engine Laboratories WT 5.1 Complex Networks and Massive Data Analysis Laboratory WT 5.2 Upgrade of Distributed Computing and Data Mining Laboratory Description of postulated IT infrastructure Requirements for modular server elements External, equipped mass storage device Local management console Server rack with required additional equipment Required cabling set Virtualization software WT 5.3. Upgrade of Teleinformatics and Computer Network Laboratory WT 5.4 Upgrade of Intelligent Biomedical Signal Analysis Laboratory Set for multichannel biosignals acquisition Real-time eye movement detection and tracking system Set of equipment for generation and acquisition of stimulation signals Workstation-class computer set WT 5.5 Upgrade of Human-Computer Interaction Laboratory Requirements for each of the tasks: Task 1 Traditional eye tracking system Eyetracker integrated with a monitor Multi-function portable eyetracker Software for eye trackers dedicated to collaboration with the devices I and II Software for psychological research dedicated to collaboration with the devices I and II EEG with the device for data acquisition Task 2 Portable eye tracking system Eyetracker in the form of spectacles and a dedicated laptop set Portable unit for recording test results

4 ENGINE D5.1 Specification of Contract Basic Terms and Conditions Set that enables eye tracking for 3D displays Software for data analysis Module to synchronize the eyetracker system with the EEG from Emotive company Task 3 The presentation of virtual characters Monitor 55'' Mobile holder Managing computer with capture card: Software for creating augmented reality applications: Task 4 Large interactive wall and floor Seamless 46' Monitors: The motion sensor: Computer: Task 5 Infrared camera An infrared camera: Software for the cameras: Task 6 - System for calculations involving concurrent server and two workstations with four GP-GPU cards Task 7 Software for speech synthesis Task 8 - Equipment for recording speech samples Task 9 Software for modelling and visualization of 3D scenes Conclusions Appendix Appendix Appendix Appendix 4 Riverbed Quote for the license and maintenance services (WorkTask 5.3) Appendix 5 - Riverbed statement (WorkTask 5.3) Appendix Appendix Appendix Appendix Appendix Appendix Appendix

5 Appendix Appendix

6 ENGINE D5.1 Specification of Contract Basic Terms and Conditions List of Figures Figure 1. Process of building capacity of Engine Laboratories

7 List of Tables Table 1. Equipment breakdown

8 ENGINE D5.1 Specification of Contract Basic Terms and Conditions Executive Summary In this report we present the specification of purchases connected with Work Package 5: Capacity building through acquisition, development and upgrading of research equipment. This report contains prepared Specification of Contract Basic Terms and Conditions for tasks WT building New Complex Networks and Massive Data Analysis Laboratory and WT 5.2 upgrading Distributed Computing and Data Mining Laboratory and WT 5.3: Upgrade of Teleinformatics and Computer Network Laboratory. We also describe purchases for WT 5.4: Upgrade of Intelligent Biomedical Signal Analysis Laboratory and WT 5.5: Upgrade of Human- Computer Interaction Laboratory

9 Introduction The main goal of Work Package 5 Capacity building through acquisition, development and upgrading of research equipment is to assure innovation increase in ENGINE through the upgrade the old and acquiring new laboratories equipment. WP 5 is focused on the acquisition, development and upgrading equipment, which will constitute laboratory background of ENGINE Centre. The main objective of upgrading the equipment for the project is to provide a base to support the research and innovation potential of the centre as a whole. The development of infrastructure, and therefore the scope of the research activities undertaken by ENGINE will enable closer cooperation with the industrial partners. Figure 1. Process of building capacity of Engine Laboratories The content of this report is as follows. In the second section we will present the planned purchases for each laboratory. In the sections 3, 4, 5, 6 and 7 we will present the specifications of the planned purchases for all five laboratories. In the last section we will present the report summary. At the end of the report several appendixes containing mainly the documents concerning the undertaken actions and descriptions of purchases will be given

10 ENGINE D5.1 Specification of Contract Basic Terms and Conditions Planned purchases for Engine Laboratories To build the capacity of the Engine laboratories five Work Tasks have been planned (WT ). The tasks titles, the planned laboratory equipment and their net prices are given in the Table 1. Table 1. Equipment breakdown WT Laboratory NET value WT 5.1 Establishment of a New Complex Networks and Massive Data Analysis Laboratory Two Blade Enclosures (up to 8 full blade servers each) with power grid and four SAN switch ( EUR) Disk array with min. capacity 80TB (Gross value), at least 1GB/s data transfer, with SAS class hard drives (6Gb, 10K HDD, min capacity 72TB) and SSD class hard drives (6Gb, SSD, min. capacity 8TB) and extended 5 years warranty with Next Business Day On-Site service support ( EUR) From 8 to 12 blade servers. Each of them equipped at least with ( EUR): EUR o from 2 to 4 64bit 8 core processors (min 2,4GHz) or 10, 12 core processors (min 2,2GHz) o from 64GB to 128GB RAM o redundant power supply system o 3 highly available, redundant I/O fabrics (1Gb & 10Gb Enhanced Ethernet, Fibre Channel, Infiniband) o RAID controllers o virtualization support o extended 5 years warranty with Next Business Day On-Site service support o operating systems Laboratory infrastructure, network connection, power supply, air conditioning, server room security, uninterruptible power source (up to EUR) Databases software on Academic or Developer Licence (4 000 EUR) Software for creating virtualized environment and further management of it ( EUR) Software for exploratory analysis and visualization of complex network data e.g. CYRAM NetMiner 4 ( EUR) WT 5.2 Upgrade of Distributed Computing and Data Mining Laboratory 88524TG IBM eserver BladeCenter(tm) H Chassis with 2x2980W PSU+Cisco Catalyst Switch Module 3012 for IBM BladeCenter +IBM Flex System FC3171 8Gb SAN Pass-thru or similar - ( EUR) BladeCenter HX5, 2x Intel Xeon E7-4870, 36GB DDR3 ECC,2x50GB HDD,2xRJ-45 GbEth (9x) or similar ( EUR) IBM System Storage DS3524 Express Dual Controller Storage System EUR

11 WT 5.3 WT 5.4 WT 5.5 Total Eight 8 Gbps Fibre Channel ports and four 6 Gbps SAS ports option GB 2.5in 15K 6Gb SAS HDD or similar ( EUR) Express NetBAY S2 42U Standard Rack Cabinet +IBM Local 2x16 Console Manager+1U 19in Flat Panel Monitor Console Kit with Optical Drive Bay w/o keyboard or similar (4 000 EUR) Cabling, options and small accessories necessary for connectivity, power distribution and mounting (2 000 EUR) VMware ESX, VMware VirtualCenter Suite for Blade Servers pack ( EUR) Chassis & storage management software (5 000 EUR) IBM BladeCenter & virtualization support Software (8 000 EUR)) Upgrade of Teleinformatics and Computer Network Laboratory OPNET MAINTENANCE FOR UNIVERSITY PROGRAM PARTICIPANTS ( EUR) Upgrade of Intelligent Biomedical Signal Analysis Laboratory Complete multichannel biopotential (EMG, EEG, ECG) measurement system (ghlamp, gusbamp, gbsamp, geegsys, geyetracker, g.vrsys, gbcisys) ( EUR) Upgrade of Human-Computer Interaction Laboratory Eye-tracker devices for traditional, mobile and remote research with software, containing stationary eyetracker, mobile eyetracker and eyetracker glasses ( EUR) Interactive surfaces system consisting of wall and floor ( EUR) Virtual Mannequin (5 000 EUR) Infrared camera (5 000 EUR) Massively parallel computational system e.g. NVIDIA Tesla S2090 ( EUR) Speech sample recording station (1 000 EUR) Speech synthesis program with full bank of THE Polish and English/American English voices (5 000 EUR) Four GPU graphic boards - e.g. nvidia Quadro 4000 (3 000 EUR) Scene modelling and rendering software package - network license e.g. 3d Studio MAX - (5 000 EUR) EUR EUR EUR EUR

12 ENGINE D5.1 Specification of Contract Basic Terms and Conditions WT 5.1 Complex Networks and Massive Data Analysis Laboratory The main purpose of this laboratory (CNMDAL) is to provide advanced and powerful computing resources for complex analyses, simulation and modelling research projects performed in ENGINE, also with cooperation with other specialized ENGINE laboratories. In this sense the laboratory will play a central role for performing high performance computing in the area of complex networks and massive data analysis. The computational power offered by this laboratory will enable to perform more complex analyses that are computationally complex and/or require massive storage. The idea is that the computational power offered by this lab will be of two kinds: (I) general purpose nodes that run a scientific-enabled version of Linux operating system, called computational nodes and (II) specialized nodes that can be configured to run very specific software, called utility servers. In the former case the nodes will form a computing cluster in which it will be possible to run very computationally demanding tasks in scientific languages such as R, Matlab or python. The specialized nodes will be easy to reconfigure to install any kind of application that is needed by researchers. This approach will support and motivate researchers to build applications that are able to benefit from the cluster environment, since they will gain access to higher computing power. On the other hand, some applications do not allow to be installed in such an environment (e.g. because of different OS requirements), this is why CNMDA still gives the chance to install and run the software using the other kind of nodes. Both options will be supported by fast networking and dedicated storage, as well as both will support virtualization. The main applications of the CNMDAL are complex networks analysis and massive data analysis, and the scientific methods that will support these two goals are (but not limited to): graph analysis, machine learning, data mining, statistics, natural language processing. As previously mentioned, the laboratory consists of three main parts: computational nodes, utility servers and storage, networking. The specification of contract basic terms and equipment is provided in the following Appendices: Appendix 2 Data storage system specification Task 1 (in English) Appendix 3 Utility servers specification Task 2 (in English)

13 WT 5.2 Upgrade of Distributed Computing and Data Mining Laboratory The main goal of WT 5.2 is to upgrade the Distributed Computing and Data Mining Laboratory, which is to be a base for the works focused on designing efficient computer systems. Designed computer systems are to be dedicated to the database systems and data warehouses, decision support and data mining systems. Mentioned IT systems activity have a characteristics that should be reflected in the considered upgrade of laboratory. Additional terms are that forced by task of designing, tuning and testing of structures and algorithms for distributed computing and data mining. After analysis was decided that laboratory upgrade will be a new system, which can interoperate with existing elements. Because of the requirements have been formulated following assumptions for the system: should contain several autonomic, physical compute units, should give opportunities for multiplication of compute environments via virtualization, should contain specialized parallel vector computing units, should contain effective storage system, which can deliver storage for physical and virtual machines, storage should be easily switchable between units on the fly, all elements must be connected with high throughput network structure, used network should have universal characteristics to carry communication protocols as well as raw data exchange whole system must be highly configurable, configuration should be possible via minimal number of tool interfaces, should give possibilities for continuous monitoring, statistics acquisition and power control should be compact and power efficient According to formulated requirements and allocated budget it was decided that the best solution it seems to be an integrated solution of class called converged infrastructure. Description of postulated IT infrastructure As described in above whole designed new IT structure was pointed as converged infrastructure. After reviewing of existing solutions various suppliers was formulated set of desired, detailed properties for structure. The criteria of formulating were: fulfilment of general assumptions, feasibility, getting possibly best solution within outlined budget, precision. The result of work is description of structure named as modular server consisting of: chassis with dedicated control modules, 2x dedicated converged switch management system 9x autonomic processing units compute nodes 2x specialized parallel computing node dedicated software for chassis and storage management dedicated software supporting management and virtualization

14 ENGINE D5.1 Specification of Contract Basic Terms and Conditions and, to ensure completeness of solution and integrity, following elements external, equipped mass storage device local management console server rack with required additional equipment required cabling set virtualization software system The solution should easily integrate with existing elements of laboratory, mainly with IBM POWER 720 and POWER 520 machines by sharing resources, especially storage and network infrastructure, and a common management interface in a way that does not cause a reduction in performance or functionality of any of the elements of the target lab structure. Requirements for modular server elements Chassis with dedicated control modules This element is for physical integration of other modules, power distributing, carry main system buses, low level control and configuration of whole set elements. Required properties: have to ensure mechanical integration of other physical modules it must have minimum capacity of 10 full size compute nodes and all other elements. If single chassis is to small volume they must be delivered more than one, but identical, fully compatible and integratable. mounting standard: RACK 19 must be able to integrate and handle compute nodes based on x86 and RISC/EPIC processor architecture, offered by the manufacturer supplying chassis must include modular power supply, hot swappable. Power supply system installed inside chassis must deliver power enough for chassis fully equipped with compute nodes in highest configuration and all options. Power supply system must guarantee delivering enough power for minimum 14 compute nodes with 2 processors (135TDP each) and maximum RAM size. Hot-swap power supply modules, redundancy minimum of class N+1. can carry at least 2 dedicated converged switches and connect compute nodes to switches via minimum two 10Gb Ethernet channels per node must be equipped with redundant management module. Management module (MM) must give possibility for remote Power on, off and cycle independently for each compute node. MM must provide remote access to optical media device, ISO image for each compute node for data manipulation and boot process. MM must provide optical localization of chassis and compute nodes. MM should provide remote access via web browser without additional components support. Chassis must be equipped with minimum 2 redundant MM. MM must provide independent simultaneous access to text-based and graphics-based compute node consoles screens of all servers in mentioned infrastructure. Graphic visualization of each component status must be possible also. it must have minimum capacity of 10 full size compute nodes and all other elements. If single chassis is to small volume they must be delivered more than one, but identical, fully compatible and integratable. mounting standard: RACK 19 must be able to integrate and handle compute nodes based on x86 and RISC/EPIC processor architecture, offered by the manufacturer supplying chassis

15 must include modular power supply, hot swappable. Power supply system installed inside chassis must deliver power enough for chassis fully equipped with compute nodes in highest configuration and all options. Power supply system must guarantee delivering enough power for minimum 14 compute nodes with 2 processors (135TDP each) and maximum RAM size. Hot-swap power supply modules, redundancy minimum of class N+1. can carry at least 2 dedicated converged switches and connect compute nodes to switches via minimum two 10Gb Ethernet channels per node must be equipped with redundant management module. Management module (MM) must give possibility for remote Power on, off and cycle independently for each compute node. MM must provide remote access to optical media device, ISO image for each compute node for data manipulation and boot process. MM must provide optical localization of chassis and compute nodes. MM should provide remote access via web browser without additional components support. Chassis must be equipped with minimum 2 redundant MM. MM must provide independent simultaneous access to text-based and graphics-based compute node consoles screens of all servers in mentioned infrastructure. Graphic visualization of each component status must be possible also. Dedicated converged switches System have to be equipped with 2 dedicated converged switches. Each switch must fulfill following requirements: must be dedicated for described chassis, can connect minimum of 14 internal 10GbE ports can connect minimum of 2 external 10GbE ports be able to connect minimum of 4 external ports in standard 8Gb FC or 10Gb iscsi/fcoe according to configuration of mass storage device should have possibility of increasing number of 10GbE internal ports up to 28. Should have possibility of increasing number of ports for mass storage connection up to 12. Should may be able to aggregate uplink up to 40GbE QSFP. All listed upgrades and uplink can not require device exchange. If there must be delivered external switches to meet requirements they must be delivered as redundant, at least N+1 configuration. Connection between switches must be realized as internal chassis connection, consisting of 6 FCoE 10Gb links at least. including/supporting technologies and standards: Non-blocking architecture with wire-speed forwarding Media access control (MAC) address learning static and LACP (IEEE 802.3ad) link aggregation jumbo frames Broadcast/multicast storm control IEEE 802.1D STP,IEEE 802.1s Multiple STP (MSTP), IEEE 802.1w Rapid STP (RSTP), Per-VLAN Rapid STP (PVRST) Layer 2 Trunk Failover, adapter teaming, Hot Links VLAN, 802.1Q VLAN tagging, Private VLANs Security: VLAN-based, MAC-based, IP-based ACL, QoS: IEEE 802.1p, IP ToS/DSCP, QoS: ACL-based (MAC/IP source and destination addresses, VLANs) traffic classification and processing, IP v4 Layer 3 functions: IP forwarding, IP filtering with ACLs; RIP v1, RIP v2, OSPF v2, DHCP Relay,

16 ENGINE D5.1 Specification of Contract Basic Terms and Conditions IP v6 Layer 3 functions: IPv6 host management, IPv6 forwarding, OSPF v3, IPv6 filtering with ACLs Virtual NICs (vnics): Ethernet, iscsi, FCoE 802.1Qbg Edge Virtual Bridging (EVB), Virtual Ethernet Bridging (VEB), Virtual Ethernet Port Aggregator (VEPA), VMready Priority-Based Flow Control (PFC) (IEEE 802.1Qbb) Enhanced Transmission Selection (ETS) (IEEE 802.1Qaz) Data Center Bridging Capability Exchange Protocol (DCBX) (IEEE 802.1AB) FC-BB5 FCoE,,,End-to-end FcoE, FCoE Initialization Protocol (FIP) Full Fabric mode for end-to-end FCoE or NPV Gateway mode, Management: Simple Network Management Protocol (SNMP V1, V2 and V3), HTTP browser GUI,Telnet, SSH, Secure FTP (sftp), Service Location Protocol (SLP), Serial interface for CLI, firmware upgrade via TFTP and FTP, Network Time Protocol (NTP), Remote Monitoring (RMON) agent, port mirroring, POST diagnostics Management system Management system should be module dedicated for used chassis and its components, extending functionality of integrated chassis management modules. Required functionality: monitoring of structure elements utilization, like processor utilization, memory usage, storage usage, automatic detection of physical and virtual servers automatic inventory with function of export as a file management of network resources management of switches installed inside chassis monitoring of SAN and LAN switches graphical visualization of LAN/SAN network topology VLAN configuration over installed switches mass storage management, including: suport for physical and virtual storage inventory of physical storage configuration raid monitoring management of virtual volumes: creating, discovering, inventory, modification and removing, for virtual resources management systems should be able: integrate with virtualization software 2 brands at least, including VMWare vsphere. create, modify, manage and move virtual servers visualize virtual Server and their dislocation system should provide remote management with following functionality: remote console access, remote keyboard, mouse, console remote access for local devices like CD/DVD/ISO/USB remote power management (on/off/restart/cycle) automatic problem discovering and reporting announcement of actual microcode level remote access to the console of any system in managed environment Compute node minimal configuration Compute node must be dedicated for structure integrated physically with described chassis

17 Each compute node must be in configuration including (at least): two processors scoring minimum 55 pts in SPEC CINT2006 and minimum CPU Mark = pts in Passmark test (mean value from 2 tests at least). minimum 20 MB cache memory for physical processor all node s processor sockets must be populated RAM: 256GB upgradeable up to 768GB RAM integrity protection: ECC, Chipkill, memory mirroring, memory rank sparing 2 SSD drives, min. 100GB each, RAID 1 protecting min. 2 NICs, 10Gb Ethernet each min. 1 external USB port management support features: UEFI, PFA (Predictive Failure Analysis), automatic restart in case of emergency, full compatibility and cooperation with management system possibility of console redirection, independent of mode security elements: PowerON Password, Administrator Password, TPM supported operating systems: Windows Server (2008, 2012), RHEL 5,6, SLES 10,11, VMWare ESX, VMWare ESXi, VMWare vsphere 5.x Specialized parallel computing node The system must be equipped with 2 (minimum) specialized parallel computing nodes utilizing CUDA architecture/technology. Physical form must correspond to whole system form. Each node must have parameters equal or better that: Number of physical processors: 1 Number of stream processors: 512 Clock frequency (PS): 1300MHz Memory throughput: 170GB/s Memory bus width: 384b Memory size: 6000MiB Memory clocking: 1800MHz Performance(peak): SP MAD: 1300GFLOPS DP FMA: 660GFLOPS Dedicated software for chassis and storage management This software and firmware description is part of chassis description. If any function is not covered by internal software of chassis control modules it should be delivered as separate software functionality. Dedicated software supporting management and virtualization. This software and firmware description is part of management module description (1.1.3). If any function is not covered by internal software of chassis control modules it should be delivered as separate software functionality External, equipped mass storage device It should be scalable storage system supporting virtualization, equipped with drives. Storage system should be external to described modular server. This device task is to deliver storage for

18 ENGINE D5.1 Specification of Contract Basic Terms and Conditions modular server elements as well as for other elements of laboratory which is to be upgraded. Requirements for Storage system: mounting standard: Rack 19 2 controllers minimum 4 interfaces 8Gb FC or 10Gb FCoE (according to configuration of converged switches ), cache memory: min: 4GB per controller, resizable, support for dual-port, hot-swappable drives, interface SAS 6 Gb/s support for 2,5 drives SFF i SSD minimum capacity: 24 drives supported RAID levels: 0, 1, 5, 6 i 10 fans and power supply modules redundant, hot-swap advanced functions: internal virtualization, thin provisioning, one-way data and snapshots migration integrated management software with independent GUI equipped with (minimum) 24 drives SAS 2.5, 6Gb/s, min. 300GB each, rpm Local management console Console for local access to the system elements. This hardware will be used in case of initial configuration or emergency situation, when remote access is not possible or unwanted, inadvisable. Local console should meet following requirements: equipped with monitor LCD/TFT min 15, keyboard, pointing device, DVDRW/DVDRAM device full cooperation with other devices supporting access via local console Server rack with required additional equipment Existing rack structure of being upgraded laboratory is nearly exhausted thus it is necessary new one element for proper utilization of new IT hardware. According to standards, good practices and laboratory coherence, server rack properties are formulated as: the standard 19 "rack the amount of usable height: 42U depth: 1200mm width: min. 600mm the wire opening: from the top, from the bottom. vent holes in the size and number to ensure sufficient temperature to maintain the optimal air exchange vents acceptable: in the side walls, front door, the back wall removable sides, the possibility of installing the front door as the left or right, secured door lock connector grounding the system cabinets movement driving wheels, Electronic Stability the ability to assemble and disassemble the cabinet for transport purposes Color: Black carrying capacity; min 600kg

19 rack should be approved by the manufacturer(s) of rest of elements and meet all of its recommendations Required cabling set To provide full functionality of designed infrastructure it is necessary proper connecting separate elements between them and with outside structure. For this purpose it is needed set of wiring cabling complementary to supplied by the manufacturer of the equipment necessary for connections, in the quantity and specifications of specification of other elements, in order to reach the full potential of functionality and performance elements. Wiring should have relevant certifications in the areas of applications resulting from the proposed specification. Virtualization software Virtualization helps rapid configuration and reconfiguration of distributed environments for testing various scenarios and algorithms. Projected infrastructure is to be a very universal environment, flexible with high computational power and fast data transfer. For fast research environment developing it will be very beneficial to use virtualization. Virtualization system should be stable, well known, mature software. Virtualization software should: make it possible to create, delete, configure, and modify environments and virtual elements for all active elements set in particular, processors, disk resources, networking enable the operations listed in above for PCs, servers and storage devices outside the set allow the creation of pools of virtual machines enable the creation of virtual network switches, isolated network structures, NAT and logical interfaces working as the "bridged" allow the activation, deactivation, freezing virtual machines enable the migration of active VMs to allow local and remote access to virtual machine consoles in record mode the local machine console facilitate the management of performance and energy for plant and machinery pools ensure the full cooperation of dedicated software described earlier provide full cooperation / integration with environments: VMWare Server, VMWare ESXi, VMware vsphere Hypervisor the scope of the software license should enable the acquisition and effective use of all resources

20 ENGINE D5.1 Specification of Contract Basic Terms and Conditions WT 5.3. Upgrade of Teleinformatics and Computer Network Laboratory The laboratory upgrade is devoted to make a wide range of simulation experiments focused on the content oriented networking approaches as well as to verify optimization models and algorithms proposed for various tasks related to network design problems. The main research tool will be OPNET Modeler equipped with additional modules, e.g. MPLS, Flow Analysis, etc. Currently, OPNET provides a free licence of their software for research purposes in University Program. However, since OPNET maintenance for University Program is not free, we would like to purchase the OPNET Maintenance for University Program for two consecutive years. Under Polish law on public procurement, purchasing support services for software OPNET is a complicated task. According to the law, scientific public entity, like Wroclaw University of Technology, is obliged to carry out the tender, during which the product and the supplier will be chosen. Purchase in a procedure without a tender is possible only when there is on the market only one product/service meeting the requirements of the customer and only one possible supplier/service contractor. In the case of the simulation software on the market there are a number of products with similar functionalities (packages OMNET, NS, etc.). Interpretation issued by the Office of the Public Procurement of Wroclaw University of Technology said that in such a situation it is necessary to call for tender and selection of both software and service providers must be done on the basis of the results of the tender. In such a situation, it could happen that in the result of the tender we would be forced to purchase a product different than OPNET Modeler and support services for this another product purchased. In April 2014 the change of the Law on Public Procurement came into effect. Current regulations allow the simpler purchase procedure for products and services dedicated solely for the research, experiment and scientific purpose, which do not serve a purpose of serial production aiming to achieve commercial viability nor to cover the cost of research or development. In addition, there are further simplifications the procedure in the case when the purchase price is less than EUR Therefore, we decided to purchase such the number of licenses to be able to use the simplified procedure of purchasing. The simplified procedure is described in an internal Wroclaw University of Technology document as ZW 35/2014 and requires the following actions: 1. The applicant shall establish substantive justification for the purchase and selection of a particular contractor. For every purchase applicant must attach a statement that the purchase will be used solely for the purpose of research, experiment, study or development, which do not serve a purpose of serial production aiming to achieve commercial viability nor to cover the cost of research or development, and indicate the project and the purpose of making the purchase

21 2. The applicant shall obtain the opinion of the Public Procurement Coordinator (in terms of value of goods) 3. The applicant shall obtain approval of the funds administer (in this case the project manager and faculty Dean) 4. If the value of the contract exceeds PLN including taxes (4 733 EUR, including taxes) it is absolutely required to sign up written agreement in accordance with the procedure adopted for use in Wroclaw University of Technology. We have applied for the 6 sets of license and maintenance services. From the producer of the OPNET software, Riverbed Technology corporation, we have received an offer to grant free licenses and paid support service (Appendix 4 Riverbed Quote for the license and maintenance services (WorkTask 5.3)), and the statement that Riverbed is the only vendor of OPNET Modeller software and the only maintenance service contractor under the "OPNET University Program" (Appendix 5 - Riverbed statement (WorkTask 5.3))

22 ENGINE D5.1 Specification of Contract Basic Terms and Conditions WT 5.4 Upgrade of Intelligent Biomedical Signal Analysis Laboratory The purpose of the task WT5.4 is to upgrade Intelligent Biomedical Signal Analysis Laboratory. The upgrade is to be achieved through the purchase of hardware and software to conduct advanced research at a highest level. After a thorough analysis of the needs arising from the spectrum of tasks that are and are to be carried out within the laboratory, taking into account the budget for the task, it was decided that the best solution would be to create a new, multi-purpose work station. The position should be a collection of topclass equipment supplemented by computer with high processing power and visualization, and proper software accordingly. Based on the analysis of the nature of the tasks and devices market were formulated requirements for the planned work station. Work station for the acquisition and analysis of biomedical signals is to be consisting of: Modular signal acquisition system configured as follows: o Properly equipped set for multichannel biosignals acquisition, o Real-time eye movement detection and tracking system, o Device for electrical stimulation, o Set of equipment for generation and acquisition of stimulation signals Workstation-class computer set. Further are described detailed requirements for components. An important factor in their formulation was compatible equipment to each other and compatibility with hitherto held. Set for multichannel biosignals acquisition. 1. It should be set of devices, tools and software with following parameters and functionality. 2. There must be a minimum of 256 independent measurement channels, each satisfying that: 3. there is independent Analog/Digital Converter for channel with resolution minimum of 24bit (256DAC) 4. has a wide input sensitivity to be able to measure EEG, ECoG,ECG, EMG, EOG without any saturation 5. minimal sensitivity <60nV (LSB), +/-250mV range, Input impedance >100 MOhm 6. sampling rate 38.4 khz, possibility of oversampling and internal pre-filtering software programmable. 7. the set allows the simultaneous connection of the electrodes and the acquisition of signals from all channels for passive and active electrodes. All needed for this any additional, transitional modules, power, interfaces or cabling must be a part of set in the quantity and specifications allowing for simultaneous connection 256 passive electrodes, 256 active electrodes and mixed configurations. 8. all channels can be software-configured as bi- or unipolar 9. channel calibration unit is integrated with measurement one 10. cooperates with standard electrodes via TP 1,5mm connector type

23 11. Set devices should be powered by an external power supply meets the medical standards and are able to be battery powered. 12. The set must be easily expandable on the way of measurement channels number increasing. 13. All elements must have EN (IEC6061-1) medical certification, if applicable. 14. There must be communication interface enabling connection setup and data acquisition from a PC in a standard LPT/USB, for all elements for which this applies. 15. Important element is dedicated software to configure the all elements of the set where applicable, storage and data management, data visualization, real-time processing, handling the camera. 16. The software should have a graphical user interface and work under Windows 7. The software should contain: a. libraries of Application Programming Interface (API) for C/C++ language allowing full control of set elements. b. libraries/modules for full communication with set elements, signal acquisition and processing from SIMULINK/MATLAB, including: c. standard, advanced functions for biosignal processing d. specific functions for EEG signals analysis and processing e. parameters extraction f. visualization taking into account the arrangement of the electrodes g. spectral analysis 17. Preferred minimum set of devices and accessories: a. sets of measurements of EEG caps (set - 3 sizes, S, M, L). Each cap, electrode positions: 74 standard + 86 intermediate (system 10/10), the ability to add additional items. Fastening belts for each set. b. min. 512 active electrodes circular, Ag / AgCl sinter, c. min. 6 circular active electrodes for impedance measurement, Ag / AgCl sinter, d. min. 6 circular passive electrodes for grounding, Ag / AgCl sinter,for 3)..5) TP connector 1.5 mm, the length of the link min. 120cm, for each electrode mounting components necessary for the use of the EEG measurement (consistent with the design of caps) and ECG, EMG, EOG (adhesive pads), e. min. 6 active reference electrodes active - clips ear cushions, Ag / AgCl sinter, TP connector 1.5 mm, the length of the link min. 120cm,min. 4 reference electrodes of gold (Au) - Clips ear, TP connector 1.5 mm, the length of the link min. 120cm, f. necessary additional elements: the fastening tapes (Velcro), sleeves, bands, gels, highly conductive pastes, the syringes for the gel with a set of compatible interchangeable tips (min 4 pcs syringes), cleaning brushes, labels, g. 20 pcs of 3-axis accelerometers, with the following parameters: range +/- 100g, the sensitivity of 1mV/g, the TP connector 1.5mm

24 ENGINE D5.1 Specification of Contract Basic Terms and Conditions Real-time eye movement detection and tracking system 1. Eye-tracking part of work station should meet the requirements of: 2. tracking device should be in the form of glasses, lightweight ensuring long wear without discomfort, dimensional adjustable, 3. the ability to track both eyeballs at the same time 4. internal correction of parallax error 5. sensitivity / resolution = <1 st 6. transmitted data: x, y coordinates of the eye, twist of the glasses, the diameter of the pupil, the speed 7. the frequency of data transmission: min 50 Hz, USB interface, 8. It should be delivered a dedicated data acquisition software for Simulink/Matlab environment. 9. Device for electrical stimulation 10. This device is intended as programmable current stimulator with following properties: 11. the ability to deliver one or two-phase stimuli and their sequences, 12. maximum output current: +/- 25mA direct current under load of 1kOhm, 13. the possibility of starting by an external signal trigger, 14. built-in impedance measurement and detection of lack of electrodes contact, 15. electrodes connector: 1.5 mm TP 16. communication with a PC via USB, powered via USB, 17. It must be included dedicated software to the control and configuration, allowing inter alia definition of stimulation waveforms of different shapes, including rectangle, triangle, sine wave, rising or a falling saw. The length of the sequence: min 30s. 18. The software for Simulink/Matlab environment with at least the same functionality must be included also. Set of equipment for generation and acquisition of stimulation signals 1. The set should consist of several devices with their respective properties described below. 2. Device to control the generation and acquisition of triggering signals for executive stimulation devices/modules (min 12 outputs and min 12 digital inputs). Device should communicate with the supervisory computer via the USB interface. 3. Executive module containing min. 4 training LEDs and min. 4 stimulating LEDs with adjustable brightness. 4. Vibration-touch interface, 10pcs 5. Bounce free button module to record the reaction, 2pcs. 6. Single flashing LED, 10pcs. 7. A set of necessary wiring and additional elements, including supplies, to achieve the full potential functionality of all devices simultaneously. 8. Additional, but required element is dedicated software pack including API libraries for C/C++ and appropriate software for Simulink/Matlab environment

25 Workstation-class computer set For measurement, data acquisition, devices configuration, and data storing, processing, visualisation it is necessary a workstation-class PC computer. Basing on knowledge of data and algorithms properties were formulated minimal requirements for workstation: 1. CPU achieving a minimum 10000pts in CPU Mark test of PassMark 2. 16GB RAM 3. 2TB HDD storage RAID protected 4. 2 graphics cards with CUDA technology, of performance at 2000 GFLOPS (FMA) 5. 6x USB 3.0 ports, LPTport 6. 2 monitors, flat, min. 27'', native resolution min. 2560x keyboard, mouse and as an additional equipment 2 Microsoft Kinect controllers

26 ENGINE D5.1 Specification of Contract Basic Terms and Conditions WT 5.5 Upgrade of Human-Computer Interaction Laboratory Human-Computer Interaction laboratory upgrade (WT 5.5) consists of following parts: portable eye tracking system, traditional eye tracking system (both with dedicated software), interactive devices, and speech synthesis and recording equipment. Those devices have been divided into seven tasks that correspond to groups of equipment. Requirements for each of the tasks: Task 1 Traditional eye tracking system Eyetracker integrated with a monitor This device should enable sampling rate - at least 300Hz, sampling inaccuracy max 0,25% and the maximum delay of processing 10ms. Moreover it should have the following parameters: The area of freedom of movement for standard distances: at least 35x15 cm Minimum distance range: 50-80cm The speed limit head movement: 50cm / s The maximum tracking angle of vision: 35 inches The attached monitor should have the following parameters: Screen size: at least 23cale Physical resolution: at least 1920x1080 The proportions of the picture: 16:9 Response time: 5ms max Multi-function portable eyetracker This device for mobile eye tracking should meet the following criteria: Sampling at least 60Hz The area of freedom of movement for standard distances: at least 50x35 cm Minimum distance range: 40-90cm The inaccuracy rate: at most 0.4% The maximum recommended size of the display: 25cali The speed limit head movement: 50cm / s The maximum tracking angle of vision: 35 inches Moreover the recorded data processing module should be integrated in one device. The device should record data such as: timestamp, position the eye, point of view and diagonal of pupil

27 Software for eye trackers dedicated to collaboration with the devices I and II This software should work with both above devices and should meet the following requirements: Basic functions: Language: English Software Development Kit module (SDK) The ability to study materials such as PDF files, videos, web pages, photo images and image from a camera Software should be logging output such as: Coordinates of the fixation The independent variables Replies in polls made by users Presented materials Pushed keyboard buttons and mouse clicks Internet Pages visited Recordings from the camera The events defined by a moderator Results should be presented with at least: Restoration and recorded video from the path of sight Path of sight (gaze plot) Maps thermal (heat maps) Areas of interest (areas of interests) This software should also enable to export results to files, at least MatLab, MS Excel, video, graphics. Software for psychological research dedicated to collaboration with the devices I and II The specification is still under development. EEG with the device for data acquisition This device should have at least 8 analog inputs and at least 1 USB exit. It should also have at least 16bit Digital Analog Converter. It should enable to connect devices such as:: electrocardiogram, electroencephalogram, Electromyogram and eyetracker. The EEG device should have at least 6 channels and a cap with at least 6 electrodes. Detailed description of the task (in Polish)

28 ENGINE D5.1 Specification of Contract Basic Terms and Conditions Task 2 Portable eye tracking system Eyetracker in the form of spectacles and a dedicated laptop set Binocular-shaped glasses eyetracker which should have the following parameters: Weight: no more than 150g The ability to customize the size of the head Sampling at least 60Hz, 30Hz at least both eyes Inaccuracy Sampling at most 0.5 degrees Minimum working distance: no more than 40cm The range of vision tracking levels: at least 80 degrees Vertical eye tracking range: at least 60 degrees Built-in microphone The recording device - a portable computer should have the following parameters: Dedicated laptop with installed software and a set of drivers ready to work Installed Software Development Kit (SDK) Time recording when on battery: at least 2 hours Capacity recordings: at least 180 hours It should register at least: Image from with built-in camera, The position of the focal point of vision, the diameter of the pupil and pupil coordinates. Built-in camera's should enable vision field recording with resolution of at least 1280x960px and the number of frames per second - at least 24fps. Portable unit for recording test results This unit should register: Image from the built-in camera The position of the focal point of vision The diameter of the pupil Pupil coordinates Set that enables eye tracking for 3D displays This module should enable eye tracking for users that work on 3D displays - 3D Active Glasses. This technology should be fully integrated with the mobile eye tracker. It should also enable contrast at least 200:1. Software for data analysis This software should work with eye tracking devices described in this task and should meet the following requirements: Basic functions:

29 Language: English Software Development Kit module (SDK) The ability to study materials such as videos, graphic files, web pages and images Software should be logging output such as: Coordinates of the fixation Presented materials Pushed keyboard buttons and mouse clicks Internet Pages visited The events defined by a moderator Results should be presented with at least: Restoration and recorded video from the path of sight Path of sight (gaze plot) Maps thermal (heat maps) Areas of interest (areas of interests) This software should also enable to export results to files, at least MatLab, MS Excel, video, graphics. Module to synchronize the eyetracker system with the EEG from Emotive company This module should enable synchronization of data from all of the above eyetrackers with the record data from the Emotiv EEG Neuroheadset. It should have a mutual graphical user interface and record data with the same timestamp. Detailed description of the task (in Polish) Task 3 The presentation of virtual characters Monitor 55'' With the following parameter 1. A minimum of 700 nits Brightness 2. Native Resolution 1920x Viewing angle 178/178 degrees 4. LED Backlight 5. Works in portrait mode 6. Response Time: 6.5 ms

30 ENGINE D5.1 Specification of Contract Basic Terms and Conditions 7. The minimum time of work guaranteed by the manufacturer: hours 8. Input Connections: HDMI, VGA, DVI, external audio, RS232, IR sensor to an external 9. Output Connectors: DVI, RS232, linear output 10. Power consumption not greater than 190W 11. Built-in intelligent power control 12. Built-in brightness sensor 13. VESA Mounting Mobile holder 1. Two vertical pipe mounting 2. The ability to adjust the suspension height of the monitor 3. Color: black 4. The maximum load is not less than 80kg 5. Wheels with brake 6. The set of handles at the camera (2 pcs.) HD Camera - 2 pcs.: 1. CMOS minutes. 5 megapixels 2. FullHD resolution at 30fps / s 3. The angle of view of at least 140 degrees 4. Built-in microphone 5. Auto white balance 6. Supported operating systems - minimum: Windows 2000 / XP / Vista / 7/8 7. Work temperature -20 to +80 degrees Celsius 8. Connectors: HDMI, USB 2.0, TV 9. The possibility of video recording on memory cards 10. Includes AC adapter, mounting brackets, cables, battery, camera cover. Managing computer with capture card: 1. Processor minimum four-core 3.1 GHz core

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