Incremental transient power-based protection scheme for a DC microgrid
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Date
2022
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Publisher
Springer Science and Business Media Deutschland GmbH
Abstract
A key step in the realisation of DC microgrids is the development of robust protection schemes. Bidirectional power flow in ring-type configurations makes protection design too complicated. This paper presents an algorithm for selective fault location and isolation of faulty parts in the transient stage itself. At the onset of a fault, the proposed scheme computes incremental transient power (Δ P) from initial changes in voltage and current. The sign of Δ P captured by different IEDs is compared to determine the fault location. Though the scheme is designed for the unit protection of feeders, it is also capable of locating and isolating external faults accurately. A backup scheme using local measurements is provided, in case of communication failure. The schemes are simulated using extensive simulations in MATLAB/SIMULINK platform. The results confirm that the proposed protection design operates within a few milliseconds and is highly selective and stable. © 2022, The Author(s), under exclusive licence to Springer-Verlag GmbH Germany, part of Springer Nature.
Description
Keywords
Electric fault location, Electric load flow, Location, Microgrids, Power quality, Simulation platform, Transients, BESS, Bidirectional power flow, Directional, Fault location and isolations, LVDC microgrid, Microgrid, Protection, Protection designs, Protection schemes, Transient stage, MATLAB
Citation
Electrical Engineering, 2022, 104, 4, pp. 2281-2292
