Il Progetto INTEGRIS. Risultati e nuove prospettive per lo sviluppo delle Smart Grid October 2nd 2013 Brescia
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1 Il Progetto INTEGRIS. Risultati e nuove prospettive per lo sviluppo delle Smart Grid October 2nd 2013 Brescia From INTEGRIS a solution architecture for energy smart grids Jean Wild - Schneider Electric
2 Integris project overview Field tests - 5,5 M project, funded by EC, FP7-9 European partners - 3 field tests in Italy, Spain & Finland - 3 years ( ) duration Utilities Academic Industrial
3 Project s goal Primary Substation Control center Optical Fibber IEC Primary Substation -Develop & test robust, scalable & innovative Information Communication Technology (ICT) Wi-Fi Secondary substation IEC MV BPL Secondary substation -Develop & test Interoperability of the PLC on low & medium voltage, Wi-Fi, Wireless Sensor Network with standard LV BPL Wi-Fi -Test the limits and benefits of distributed intelligence Smart meter 3
4 Architecture & use cases Control centre SCADA NMS (network management system) NTP server Primary substation Primary Substation Optical Fiber IEC MV BPL modem FO modem Wi-Fi modem IEC PC platform MV BPL Secondary substation Secondary substation RTU Wi-Fi
5 Architecture & use cases -LV & MV grid monitoring (Power, quality ) Control centre Primary substation IEC Secondary substation MV BPL modem IEC FO modem WiFi modem Use cases -Load flow calculation -LV faults: broken zero conductor, wrong phase order PC platform RTU Meter data collector LV BPL modem Zigbee sensors Street cabinet LV BPL modem PQ meter Customer 1 LV BPL modem Customer 2 Smart meter
6 A2A s Field Test : monitoring solution A substation can have up to 15 LV lines RTU + ZigBee sensors LV Circuit breaker RTU gateway -LV busbar voltage and PQ values -LV feeder current, P and Q Wireless & battery less sensors
7 Zoom on substation monitoring solution Monitoring solution developed for MV/LV substation LV currents - Wireless & battery less sensors - RTU with wireless communication gateway - Voltage measurement card Benefits : -Easy Installation -No maintenance -Low cost -Safe compatible -Digitization LV voltage card 61850
8 Schneider Electric s involvement in SG pilot s Smart Generation On going =S= Importance Street lighting µgrid end user / EV Aggregator Market Industrial Building & EV Home & EV EnR-Pool Demand Side AMM Venteea IT &AMM/DA convergence ADMS functions GreenLys Vol Var Mgt Store Flexible Distribution Sefl healing MV Smart MV/LV & LV feeder Smart S/S HV-MV Smartcity Weather forecast Stedin Storage REN mgt Integris Under Definition Contract in hand Importance Main target E4LV OTM Reference Design Business Model IT mgt Full scope Sub & Feeder Auto Business Model Grid4EU AMI Poste Intelligent Sub Automation HEC Defense LV Automation Smart building Tecteo OLTC Millener (Power) Prosumer
9 Future solutions tested in SG pilots -Grid measurement & analysis -Volt VAr control -Flexible distribution -Demand side management
10 Grid analysis : measurements Monitoring architecture & primary digitization for a better voltage management Primary substation MV measurements Tested in VENTEEA project
11 Grid analysis : grid Smart Scan Inputs : MV/LV substation Smart sensors (wireless & battery less) - measurements at the MV/LV substation feeders - Consumption at the customer level (smart meter) Smart Scan compares both measurements & consumption Outputs - LV Connexion scheme - Losses localization Customer s smart meter
12 Smart Scan: GreenLys experimentation Field test: MV/LV substation, feeding residential buildings with Linky meters Objective: find automatically meters affectation per feeder & phase Inputs: -30 min load curves from the meters -30 min measurements from the feeders Outputs: Meters affectation per phase & feeder with 92% success Tested in GreenLys project
13 Voltage smart monitoring Volt VAr control How to easily monitor the voltage on the grid (LV & MV) & centralize measurements Control centre U LPVT : low power voltage transformer U U U U
14 VVC components, under investigation OLTC for MV/LV transformer Components Characteristics On Line Tap Changer MV/LV new transformer generation Electronic VAR compensator Time answer : > 20 ms Management of the system To be defined : local regulation & / or centralized Voltage and reactive power (VAr) flow are dependant variables & some components are already there (MV) Electronic VAR compensator Tested in VENTEEA project
15 Decentralized self Healing short circuit GEG grid field test normally open switch closing information transmission in GPRS fault isolated Tested in GreenLys project < 20 s
16 Future RTU range M Smart grid pilots are feeding the future range of RTU T -For monitoring purposes -For MV switch remote control will be the future standard Future RTU range Tested in GreenLys project
17 FPI for overhead sensors Control Center Measure I Measure φ(v) Measure V Useful for all neutral schemes including compensated neutral Tested in VENTEEA project GPRS, 3G IEC , DNP3 concentrator Calculate I & U Run FPI algorithm Lamp signalisation Manage Zigbee network
18 Energy efficiency & residential demand side Energy Efficiency & confort Demand side management with agreement & comfort respect Tested in GreenLys project with customers
19 Tertiary demand side Aggregator platform GEG IT loads Demand-side Operation Heating & cooling 38TEC (T3) - 300p - 3,600m² Storage Flexibility management - HVAC loads - IT loads - Storage - Photovoltaic - Electrical vehicle Heating & cooling 38EQI p - 25,000m² Tested in GreenLys project with 40 C&I customers EV & PV
20 Industrial demand side for REN 100 MW of industrial flexibility 100 MW of REN TELVENT wind forecast Tested in ENR POOL project
21 Storage for the grid Tested in VENTEEA project
22 EV integration solution What will be the Grid impact Can we re-inject energy on the grid whenever needed : «Vehicle to Grid» V2G concept What are the business models compatible with grid constraints? Eco mobility station At home (8 hours) Tested in GreenLys project In a parking (3 hours) Fast charging (20 mn)
23 Thanks for your attention
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