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首页> 外文期刊>Smart Grid, IEEE Transactions on >Active Power Management of Multihybrid Fuel Cell/Supercapacitor Power Conversion System in a Medium Voltage Microgrid
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Active Power Management of Multihybrid Fuel Cell/Supercapacitor Power Conversion System in a Medium Voltage Microgrid

机译:中压微电网中多混合燃料电池/超级电容器电源转换系统的有功功率管理

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摘要

This paper proposes a hierarchical active power management strategy for a medium voltage (MV) islanded microgrid including a multihybrid power conversion system (MHPCS). To guarantee excellent power management, a modular power conversion system is realized by parallel connection of small MHPCS units. The hybrid system includes fuel cells (FC) as main and supercapacitors (SC) as complementary power sources. The SC energy storage compensates the slow transient response of the FC stack and supports the FC to meet the grid power demand. The proposed control strategy of the MHPCS comprises three control loops; dc-link voltage controller, power management controller, and load current sharing controller. Each distributed generation (DG) unit uses an adaptive proportional resonance (PR) controller for regulating the load voltage, and a droop control strategy for average power sharing among the DG units. The performance of the proposed control strategy is verified by using digital time-domain simulation studies in the PSCAD/EMTDC software environment.
机译:本文提出了一种中压(MV)孤岛微电网的分级有功功率管理策略,该策略包括多混合功率转换系统(MHPCS)。为了确保出色的电源管理,通过小型MHPCS单元的并联连接实现了模块化电源转换系统。混合动力系统包括燃料电池(FC)作为主电源和超级电容器(SC)作为辅助电源。 SC能量存储可补偿FC堆栈的缓慢瞬态响应,并支持FC满足电网功率需求。所提出的MHPCS控制策略包括三个控制回路。直流链路电压控制器,电源管理控制器和负载电流共享控制器。每个分布式发电(DG)单元都使用自适应比例谐振(PR)控制器来调节负载电压,并采用下垂控制策略来在DG单元之间平均分配功率。通过在PSCAD / EMTDC软件环境中使用数字时域仿真研究,验证了所提出控制策略的性能。

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