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Distributed Primary and Secondary Power Sharing in a Droop-Controlled LVDC Microgrid with Merged AC and DC Characteristics

机译:具有合并交流和直流特性的下垂控制LVDC微电网中的分布式初级和次级功率共享

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摘要

In an ac microgrid, a common frequency exists for coordinating active power sharing among droop-controlled sources. A common frequency is absent in a dc microgrid, leaving only the dc source voltages for coordinating active power sharing. That causes sharing error and poorer voltage regulation in dc microgrids, which in most cases, are solved by a secondary control layer reinforced by an extensive communication network. To avoid such an infrastructure and its accompanied complications, this paper proposes an alternative droop scheme for low-voltage dc (LVDC) microgrid with both primary power sharing and secondary voltage regulation merged. The main idea is to introduce a non-zero unifying frequency and a second power term to each dc source by modulating its converter with both a dc and a small ac signal. Two droop expressions can then be written for the proposed scheme, instead of the single expression found in the conventional droop scheme. The first expression is for regulating the ac frequency and active power generated, while the second is for relating the dc voltage to the second power term. The outcomes are better active power sharing and average voltage regulation in the dc microgrid, coordinated by the common injected ac frequency. These expectations have been validated by results obtained from simulations.
机译:在交流微电网中,存在一个通用频率,用于协调下垂控制源之间的有功功率共享。直流微电网中不存在公共频率,仅留下用于协调有功功率分配的直流电源电压。这会导致直流微电网中的共享误差和较差的电压调节,在大多数情况下,这可以通过由广泛的通信网络增强的辅助控制层来解决。为了避免这样的基础设施及其伴随的复杂性,本文提出了一种用于低压直流(LVDC)微电网的下垂方案,该方案将主电源共享和副电压调节合并在一起。主要思想是通过用直流和小交流信号调制其转换器,为每个直流电源引入非零的统一频率和第二功率项。然后可以为建议的方案编写两个下垂表达式,而不是在常规的下垂方案中找到单个表达式。第一个表达式用于调节交流频率和产生的有功功率,第二个表达式用于将直流电压与第二个功率项相关联。结果是在直流微电网中有更好的有功功率共享和平均电压调节,并通过共同注入的交流频率进行协调。这些期望已通过从仿真获得的结果得到验证。

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