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Solar PV fed standalone DC microgrid with hybrid energy storage system

机译:带有混合储能系统的太阳能光伏独立式直流微电网

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摘要

With the increased utilization of renewable energy (RE) in the power sector, microgrid technology is developing rapidly. In this paper an isolated DC microgrid is simulated with solar photovoltaic (PV) as the RE source to provide power to resistive DC loads along with a hybrid energy storage system (HESS) of Battery and Supercapacitor bank. Various cases of load and solar insolation variation are simulated to validate the proposed power management strategy for DC bus voltage regulation. System performance is compared with and without the SC bank and desirable reduction in transient voltage magnitude is observed when the HESS is used. A case using real insolation data from a solar PV plant at IIT Kharagpur is also simulated to analyse the system performance considering a constant load demand. It is observed that HESS helps to reduce DC bus voltage transients very effectively in all the situations. Very large transients arising due to sudden changes in load demand or PV generation is also compensated by the HESS.
机译:随着电力领域对可再生能源(RE)利用率的提高,微电网技术正在迅速发展。在本文中,以太阳能光伏(PV)为RE源模拟了隔离的DC微电网,以为电阻性DC负载以及电池和超级电容器组的混合储能系统(HESS)提供电源。仿真了各种情况下的负载和日照变化,以验证所提出的用于直流母线电压调节的电源管理策略。比较使用和不使用SC bank时的系统性能,使用HESS时观察到瞬态电压幅度的理想降低。还使用IIT Kharagpur的太阳能光伏电站的实际日照数据模拟了一个案例,以考虑恒定的负载需求来分析系统性能。可以看出,HESS在所有情况下都可以非常有效地减少直流母线电压瞬变。 HESS还可以补偿由于负载需求突然变化或光伏发电而引起的非常大的瞬变。

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