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首页> 外文期刊>Journal of Power and Energy Engineering >Modeling and Simulation of a Hybrid Energy Storage System for Residential Grid-Tied Solar Microgrid Systems
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Modeling and Simulation of a Hybrid Energy Storage System for Residential Grid-Tied Solar Microgrid Systems

机译:用于住宅网格栓太阳微电网系统混合储能系统的建模与仿真

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Present-day power conversion and conditioning systems focus on transferring energy from a single type of power source into a single type of load or energy storage system (ESS). While these systems can be optimized within their specific topology (e.g. MPPT for solar applications and BMS for batteries), the topologies are not easily adapted to accept a wide range of power flow operating conditions. With a hybrid approach to energy storage and power flow, a system can be designed to operate at its most advantageous point, given the operating conditions. Based on the load demand, the system can select the optimal power source and ESS. This paper will investigate the feasibility of combining two types of power sources (main utility grid and photovoltaics (PV)) along with two types of ESS (ultra-capacitors and batteries). The simulation results will show the impact of a hybrid ESS on a grid-tied residential microgrid system performance under various operating scenarios.
机译:现在的电源转换和调节系统专注于将能量从单一类型的电源转移到单一类型的负载或能量存储系统(ESS)中。虽然这些系统可以在其特定拓扑中优化(例如,用于电池的太阳能应用和BMS的MPPT),但拓扑不易适应接受各种电力流量操作条件。鉴于操作条件,通过对能量存储和功率流动的储能和功率流动的储能和功率流动,系统可以设计成在最有利的点处运行。根据负载需求,系统可以选择最佳电源和ESS。本文将研究与两种类型的电源(主要公用电网和光伏(PV)相结合的可行性以及两种类型的ESS(超电容器和电池)。仿真结果将在各种操作场景下显示混合动力ES对网格捆绑的住宅微电网系统性能的影响。

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