Laboratory Infrastructure

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2 Laboratory Infrastructure

3 Laboratory Infrastructure Single-phase Microgrid Solar o 11x110Wp monocrystaline PV panels o Inverter SMA Sunny Boy 1100E 1.1kW Wind o WHISPER Wind Generator o Inverter SMA Windy Boy kw Storage o Inverter SMA Sunny Island kw o 250 Ah, 60 V Lead Acid Batteries Controllable Loads o 15 kw (Resistors, 1kW lamps, 0.5HP motor, 2.5kVAr Inductive)

4 Laboratory Infrastructure Three-phase Microgrid Solar o kwp PV panels (at parking area) o PV Inverter Schuko-SMA 3kW o PV Inverter Danfoss 2kW o PV Inverter Solarstar 4.6kW Storage 3x2kW 1ph-Battery Inverters: SMA Sunny Island 2012 (master-slave) 750Ah, 12V Lead Acid Battery Bank

5 Laboratory Infrastructure Unified Supervisory & Control System (Microgrid SCADA) o AC Measurements: Multi-instruments o DC Measurements: LEM instruments o Environmental Measurements: Irradiation, Wind Speed, Wind Direction, Temperature, Humidity, Pressure SCADA Interface o Control of Micro-generators & Loads via Programmable Logic Controller (PLC) o Programmable Load profile o Data acquisition (Lab data base, text files) o LabVIEW and CoDeSys Software

6 Laboratory Infrastructure Multi Agent System (MAS) - Intelligent Load Controllers 10 load controllers: embedded systems with Java Virtual Machine analog & digital I/O and TCP/IP connectivity. o Java based platform called Jade. o Industrial communication protocols such as OPC. o Control of the distributed sources & loads of the microgrid. o Market participation of the loads or the DG/RES, formulation of a VPP, ancillary services etc

7 Laboratory Infrastructure Real Time Digital Simulator (RTDS) RTDS Simulator is designed specifically to simulate electrical power systems & test physical equipment such as control and protection devices. RTDS is based on parallel processing. Each processor is assigned specific computing tasks depending on the network configuration. RSCAD software provides the ability to set up simulations, control, and modify system parameters during a simulation, data acquisition, and result analysis. RSCAD also includes libraries with a multitude of power system, control system and protection & automation component models, which can be used to create simulation cases.

8 Laboratory Infrastructure Triphase Power Modules 15kW - 3channel DC/DC converter. 15 kva 3ph DC/AC converter (reconfigurable to : 1ph DC/AC, single phase amplifier i.e. AC/DC/AC ) Fully programmable in Matlab/Simulink. They offer great flexibility. Many applications e.g. photovoltaic inverter, battery inverter, amplifier.

9 Laboratory Infrastructure Regatron PV Simulator - Spitzenberger & Spies Amplifier PV Simulator (Regatron) Grid Simulator - Amplifier (Spitzenberger & Spies PAS 5000) 3x10kW (1000V, 13A) TopCon Quadro Programmable DC Power Supply Software SASControl for fully controllable PV characteristics V-I 5 kva Linear Amplifier 4 Quadrand operation Fast response High bandwidth (DC - 5kHz)

10 Laboratory Infrastructure Relay Protection Devices SEL-311B (distance and reclosing relay) SEL-587 (differential/overcurrent relay) SEL-300G (generator relay) SEL-3354 (embedded automation computing platform) All relays have overcurrent elements with 2-6 setting groups, for adaptive protection implementation.

11 Laboratory Infrastructure Workbench Fully equipped workbench for electrical & electronic work. Restoration, maintenance & testing of lab equipment. Basic pcb design and protyping.

12 Laboratory Infrastructure Field Test Site Meltemi (Rafina)

13 Laboratory State-of-the-Art

14 Laboratory State-of-the-Art Controller & Power Hardware In the Loop (CHIL & PHIL) Power System/Component Studies Testing Validation Full System Hardware Testing Component Hardware Testing Pure Simulation methods Grid simulator PV simulator Hardware in the Loop: System Testing

15 Laboratory State-of-the-Art Power-Hardware-In-the-Loop (PHIL) Environment Software Side Real Time Digital Simulator (RTDS) Power Interface 4 Quadrand Amplifier (Spitzenberger) Hardware Side Hardware micro-sources & power electronics

16 Laboratory State-of-the-Art Controller-Hardware-In-the-Loop (CHIL) environment Control algorithms for power electronics operation can be implemented & tested in a real-time and safe environment Effect of the delays on the digital control stability can be evaluated Software Side Real Time Digital Simulator (RTDS) Hardware Side Target PC: Flexible programmable controller in Matlab-Simulink (by Triphase) E.g. Structure of the CHIL testbed for IDM testing

17 Laboratory State-of-the-Art CHIL + PHIL Combined Example of the combination of PHIL & CHIL for the integration of the battery inverter (hardware) in a simulated grid (RTDS) where coordinated voltage control (external control algorithm) is applied

18 Laboratory State-of-the-Art Battery Inverter - Storage Power Interface Battery Bank V Bidirectional DC/DC converter V H-Bridge Inverter Output Filter L Lg C V Grid PWM PWM Vdc 3ph battery inverter setup 60V Lead-acid battery bank 15 kw DC-DC Bidirectional Converter 15 kva DC-AC H-Bridge Inverter VBat IBat soc DC voltage Control Current Control Grid Synchronization Functions for grid connected converter Low level control Iinv Ig Vg Grid Support P-f, Q-V, Inertia Storage Management High level control Control Unit Special Features SoC estimation & battery pack protection. Droop curves integration. Resonance active damping of LCL filter. Selective harmonic injection. Control flexibility ( other control algorithms can be integrated).

19 Laboratory State-of-the-Art Adaptive protection system

20 Laboratory State-of-the-Art NTUA s Vehicle 2 Grid Electric Vehicle (EV) Emulator Custom-made EV emulator supporting the interoperability testing of the EV related protocols (IEC61851). It can be connected to an EVSE (as the device under testing) to validate its compliance with the standards. The EV emulator supports high-level communication (IEC protocol) adopting the implementation of the OpenV2G project NTUA s EV emulator NTUA s EVSE emulator Commercial EVSE charging wallbox Electric Vehicle Supplying Equipment (EVSE): Custom-made EVSE which allows the charging of a real or emulated EV in respect to two standards IEC61851 and IEC15118 (the OpenV2G implementation). EVSE can also communicate with external stakeholders, i.e. the EVSEO, implementing the OCPP 1.5 protocol. Commercial EV charging station (ETREL wallbox- 32A ).

21 Laboratory State-of-the-Art NTUA s Vehicle 2 Grid NTUA s EVSEO - GUI EVSE Operator (EVSEO) The OCPP 1.5 protocol for the communication between the EVSE and the EVSEO is implemented. No specific hardware is required apart from the device under testing. A user interface enables the testing of the OCPP implementation of a custom made or commercial EVSE. NTUA s EV Management System EV Management System A custom-made energy management system with user interface has been developed by NTUA offering several services to e-mobility stakeholders: Searching for EVSE location Electricity price information EVSE availability (orange colored EVSE means occupied while green one means available) Booking capabilities

22 Laboratory State-of-the-Art Small Wind Turbines Construction & Testing Design Simulation Optimization Construction Bench-Tests on generators Field tests according to International Standards

23 Laboratory Software

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