학술논문

Modelling of battery energy storage systems under faulted conditions: Assessment of protection systems behaviour
Document Type
Conference
Source
2016 IEEE 16th International Conference on Environment and Electrical Engineering (EEEIC) Environment and Electrical Engineering (EEEIC), 2016 IEEE 16th International Conference on. :1-6 Jun, 2016
Subject
Components, Circuits, Devices and Systems
Engineering Profession
Power, Energy and Industry Applications
Inverters
Grounding
Fault currents
Circuit faults
Batteries
Relays
Software packages
Fault analysis
inverter transient behaviour
protective relays
storage system
Language
Abstract
The paper present a preliminary study of the protective relays of a 10 MW sized battery energy storage system (BESS) recently installed by TERNA, the Italian TSO. A complete model of the system, including inverters, has been implemented in ATP-EMTP in order to assess the behaviour of protective relays during symmetric and asymmetric faults. Results show that ground fault protection of MV feeders can be performed by zero-sequence non-directional overcurrent relays, obtaining a correct fault selection even for fault resistances in the kΩ range. Phase-to-phase and three-phase fault selection can be performed by means of overcurrent relays: an inverter current limiting control under fault conditions has to be implemented to avoid the system shutdown. Lastly, HV-level faults have been simulated during BESS-supplied, islanded operation, evidencing very low fault current contributions, depending on the actual share of battery modules operating at the time of fault, with less modules giving worst results.