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Novel control strategy for dynamic load sharing between DC-DC converters for DC microgrid

机译:用于直流微电网的DC-DC转换器之间的动态负载共享的新型控制策略

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DC microgrids have sources such as solar power plants, battery storage systems, fuel cell power plants. DC-DC converters are used in each of these systems to interface them with DC bus of the microgrid. For economically optimized operation of microgrid, it is necessary to have a control system enabling desired load sharing between the DC-DC converters. The solution described here is incorporation of DC-voltage droop characteristics in each converter. However embedding droop characteristics in the converters results in drastic voltage variations on DC bus with varying loads. To address this problem, a control system is incorporated which maintains a constant voltage on DC bus of microgrid by controlling the voltage axis intercept of droop characteristics. This paper describes the innovative control strategy of voltage droop characteristics as a potential solution to load sharing control problem for multiple DC sources and extends to design and simulation of a 48V DC bus.
机译:直流微电网的来源包括太阳能发电厂,电池存储系统,燃料电池发电厂。这些系统中的每一个都使用DC-DC转换器,以将它们与微电网的DC总线接口。为了在经济上优化微电网的运行,必须要有一个控制系统,以使DC-DC转换器之间实现所需的负载共享。此处描述的解决方案是在每个转换器中合并直流电压下降特性。但是,在转换器中嵌入下垂特性会导致负载变化的直流母线上的电压急剧变化。为了解决该问题,引入了一种控制系统,该控制系统通过控制下垂特性的电压轴截距来维持微电网的DC总线上的恒定电压。本文介绍了电压降特性的创新控制策略,将其作为解决多个直流电源负载共享控制问题的潜在解决方案,并扩展到48V直流母线的设计和仿真。

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