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Parallel coordination control of multi-port DC-DC converter for stand-alone photovoltaic-energy storage systems

机译:用于独立光伏 - 能量存储系统多端口DC-DC转换器的并联控制

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摘要

Aiming at the low inertia DC micro-grid poor bus voltage quality and the energy storage SOC balanced problem, considering the urgent demand of high up/down ratio, electrical isolation and high-efficiency converter for distributed micro-source. An improved virtual capacitor (IVC) parallel coordination control strategy based on multi-port isolated DC-DC converter is proposed. First, MPIC is used to replace the traditional Buck/Boost circuit to achieve the electrical isolation from the micro sources of the energy storage system. Secondly, by analogy of IVC control, design the control frame of single voltage outside circle and multiple currents inside the ring, IVC control suitable for Four-port isolated DC-DC converter(FPIC) is obtained. Then, the parallel and coordinated control strategy under the control of IVC for multiple energy storage interface converters is established.
机译:针对低惯性直流微电网的总线电压质量和储能SOC平衡问题,考虑到高压/下降比,电气隔离和分布式微源的高效转换器的迫切需求。提出了一种基于多端口隔离DC-DC转换器的改进的虚拟电容器(IVC)并联控制策略。首先,MPIC用于更换传统的降压/升压电路以实现从能量存储系统的微源的电气隔离。其次,通过模拟IVC控制,设计了单圈的单电压控制框架和环内的多电流,获得适合于四端口隔离的DC-DC转换器(FPIC)的IVC控制。然后,建立了在IVC控制下进行的并行和协调控制策略进行了多个能量存储接口转换器。

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