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A Resilient Power Distribution System using P2P Energy Sharing

K. Victor Sam Moses BabuDivyanshi DwivediPratyush ChakrabortyPradeep Kumar YemulaMayukha Pal
Mar 2023
摘要
The adoption of distributed energy resources (DERs) such as solar panels andwind turbines is transforming the traditional energy grid into a moredecentralized system, where microgrids are emerging as a key concept.Peer-to-Peer (P2P) energy sharing in microgrids enhances the efficiency andflexibility of the overall system by allowing the exchange of surplus energyand better management of energy resources. This work analyzes the impact of P2Penergy sharing for three cases - within a microgrid, with neighboringmicrogrids, and all microgrids combined together in a distribution system. Astandard IEEE 123 node test feeder integrated with renewable energy sources ispartitioned into microgrids. For P2P energy sharing between microgrids, theresults show significant benefits in cost, reduced energy dependence on thegrid, and a significant improvement in the system's resilience. We alsopredicted the energy requirement for a microgrid to evaluate energy resiliencefor the control and operation of the microgrid. Overall, the analysis providesvaluable insights into the performance and sustainability of microgrids withP2P energy sharing.
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