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首页> 外文期刊>Sustainable Energy, IEEE Transactions on >Impact of Communication Latency on the Bus Voltage of Centrally Controlled DC Microgrids During Islanding
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Impact of Communication Latency on the Bus Voltage of Centrally Controlled DC Microgrids During Islanding

机译:通信孤岛效应对孤岛中控直流微电网总线电压的影响

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摘要

Maintaining a sustainable and reliable source of energy to supply critical loads within a renewable energy-based microgrid (MG) during blackouts is directly related to its bus voltage variations. For example, voltage variationmight trigger protection devices and disconnect DERs within the MG. Centrally controlled MGs (CCMGs) type is dependent on communication. Therefore, it is very important to analyze the impact of communication networks performance degradation, such as latency, on the bus voltage of CCMGs. This paper investigates the effect of wireless communication technologies latency on the bus voltage and performance of DC CCMGs and how to mitigate it. Two mathematical models were developed to describe and predict the behavior ofMGs during latency. As a case study, a renewable energy-based DCMG with its centralized control scheme was simulated to validate and compare the developed mathematical models. Results verify the accuracy of the developed models and show that the impact may be severe depending on the design, and the operational condition of the MG before latency occurs.
机译:在停电期间,维持可持续和可靠的能源来为可再生能源基微电网(MG)内的关键负载供电与总线电压变化直接相关。例如,电压变化可能触发保护设备并断开MG中的DER。中央控制MG(CCMG)的类型取决于通信。因此,分析通信网络性能下降(例如延迟)对CCMG总线电压的影响非常重要。本文研究了无线通信技术的延迟对总线电压和DC CCMG性能的影响,以及如何缓解这种影响。开发了两个数学模型来描述和预测潜伏期MG的行为。作为案例研究,模拟了基于可再生能源的DCMG及其集中控制方案,以验证和比较开发的数学模型。结果验证了所开发模型的准确性,并显示了影响可能严重,具体取决于设计以及延迟发生之前MG的运行状况。

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