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Hybrid Solar PV-Wind Generation System Coordination Control and Optimization of Battery Energy Storage System for Rural Electrification

机译:农村电气化混合太阳能光伏-风能发电系统协调控制及电池储能系统的优化

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The scarcity of electric power grid network in rural areas has made hybrid power generation from renewable energy sources (RESs) such as solar photovoltaic (PV) and wind inevitable. Reliable power supply from these RESs necessitates deployment of the large size energy storage system (ESS) to meet load demands that entails high investment cost. To reduce the ESS requirements, the optimal hybrid system design is vital. Effective reduction of system's cost is accomplished by optimizing the battery ESS. This paper proposes modeling and coordination control of hybrid solar PV-wind power generation system together with optimal BESS using Mixed Integer Linear Programming (MILP). The proposed scheme is designed with the objective of maintaining power flow between DC-AC buses by guaranteeing constant voltage and system frequency at the Point of Common Coupling (PCC). Simulation results obtained on MATLAB/Simulink confirms excellent performance of the proposed scheme.
机译:农村地区电网的稀缺性已不可避免地产生了可再生能源(RES)的混合发电,例如太阳能光伏(PV)和风能。这些RES的可靠电源需要部署大型储能系统(ESS)来满足需要高投资成本的负载需求。为了降低ESS要求,最佳的混合系统设计至关重要。通过优化电池ESS可有效降低系统成本。本文提出了利用混合整数线性规划(MILP)的混合太阳能光伏-风能发电系统的建模和协调控制以及最佳BESS。设计该方案的目的是通过保证公共耦合点(PCC)上的恒定电压和系统频率来保持DC-AC总线之间的功率流。在MATLAB / Simulink上获得的仿真结果证实了该方案的出色性能。

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