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Power-Based Droop Control in DC Microgrids Enabling Seamless Disconnection From Upstream Grids

机译:直流微电网中基于功率的下垂控制,可实现与上游电网的无缝断开

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This paper proposes a local power-based droop controller for distributed energy resource converters in dc microgrids that are connected to upstream grids by grid-interface converters. During normal operation, the grid-interface converter imposes the microgrid bus voltage, and the proposed controller allows power flow regulation at distributed energy resource converters' output. On the other hand, during abnormal operation of the grid-interface converter (e.g., due to faults in the upstream grid), the proposed controller allows bus voltage regulation by droop control. Notably, the controller can autonomously convert from power flow control to droop control, without any need of bus voltage variation detection schemes or communication with other microgrid components, which enables seamless transitions between these two modes of operation. Considering distributed energy resource converters employing the power-based droop control, the operation modes of a single converter and of the whole microgrid are defined and investigated herein. The controller design is also introduced. Furthermore, the power sharing performance of this control approach is analyzed and compared with that of classical droop control. The experimental results from a laboratory-scale dc microgrid prototype are reported to show the final performances of the proposed power-based droop control.
机译:本文针对直流微电网中的分布式能源转换器提出了一种基于局部功率的下垂控制器,该微电网通过电网接口转换器连接到上游电网。在正常运行期间,电网接口转换器会施加微电网总线电压,并且所提出的控制器允许在分布式能源转换器的输出端进行功率流调节。另一方面,在电网接口转换器的异常操作期间(例如,由于上游电网中的故障),所提出的控制器允许通过下垂控制来调节总线电压。值得注意的是,该控制器可以自主地从潮流控制转换为下降控制,而无需总线电压变化检测方案或与其他微电网组件的通信,从而实现了这两种操作模式之间的无缝过渡。考虑到采用基于功率的下垂控制的分布式能源转换器,本文定义和研究了单个转换器和整个微电网的运行模式。还介绍了控制器设计。此外,分析了这种控制方法的功率共享性能,并将其与经典的下垂控制进行了比较。据报道,来自实验室规模的直流微电网原型的实验结果显示了所提出的基于功率的下垂控制的最终性能。

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