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Energy management and control strategy for multiport power supply system based on energy storage

机译:基于储能的多端口供电系统能量管理与控制策略

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摘要

The MPSS (multiport power supply system) is consist of fuel cell, super capacitor and two DC/DC converters. The energy management scheme, along with the allocation principle of energy storage unit is analyzed. The paper establishes the mathematical model and proposes a composite control strategy. The strategy fuses subsection PI (Proportional and Integral) control and SMC (Sliding Mode Control) based on super capacitor energy storage device. It also realizes the current sharing control, the rapid energy transfer control and the voltage stability control based on voltage and current double closed-loop control strategy. The bidirectional DC/DC converter provides instantaneous energy; the unidirectional DC/DC converter transfers energy from fuel cell to loads and capacitor energy storage unit. Both of the converters circuit component parameters are designed for the system need. The simulation and experimental analysis verify the effectiveness of the composite control strategy for the MPSS.
机译:MPS(多端口电源系统)由燃料电池,超级电容器和两个DC / DC转换器组成。分析了能量管理方案以及能量存储单元的分配原理。本文建立了数学模型,提出了复合控制策略。基于超级电容器能量存储装置,策略熔断子部分PI(比例和积分)控制和SMC(滑动模式控制)。它还实现了基于电压和电流双闭环控制策略的快速共享控制,快速能量转移控制和电压稳定控制。双向DC / DC转换器提供瞬时能量;单向DC / DC转换器将能量从燃料电池传递到负载和电容器能量存储单元。两个转换器电路组件参数都是为系统需要而设计的。仿真和实验分析验证了MPS的复合控制策略的有效性。

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