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Distributed Noise-Resilient Secondary Voltage and Frequency Control for Islanded Microgrids

机译:孤岛微电网的分布式抗噪声二次电压和频率控制

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摘要

This paper proposes a novel distributed noise-resilient secondary control for voltage and frequency restoration of islanded microgrid inverter-based distributed generations (DGs) with an additive type of noise. The existing distributed methods commonly are designed as secondary control system systems that operate on the assumption of ideal communication networks among DGs. However, the channels are prone to stochastic noise, whereas each DG obtains noisy measurements of the states of its neighbors via environmental noises. The existing distributed noise-resilient methods, ignore a complete model of the system. In contrast, this paper proposes consensus protocols that take into account both the noisy measurements and a complete nonlinear model of the system, examines the mean-square average consensus for voltage and frequency restoration of islanded ac microgrids in an uncertain environment, and provides accurate proportional real power sharing. Our proposed consensus protocol contains two parts: the state feedback of the agent and the relative states of the DG and its neighboring DGs. Finally, simulation studies are carried out in MNTLAB/SimPowerSystems to evaluate the performance of the control laws. Simulation results and comparison with previous work reveals the effectiveness of the proposed method in regulating microgrid voltage and frequency and providing accurate proportional real power sharing.
机译:本文提出了一种新颖的分布式抗噪声二次控制,用于基于岛型微电网逆变器的分布式发电(DG)的电压和频率恢复,并具有附加类型的噪声。通常将现有的分布式方法设计为辅助控制系统系统,这些系统在DG之间建立理想的通信网络的前提下运行。但是,信道容易产生随机噪声,而每个DG都会通过环境噪声获得其邻居状态的噪声测量值。现有的分布式抗噪声方法忽略了系统的完整模型。相比之下,本文提出了一种既考虑噪声测量又考虑系统完整非线性模型的共识协议,研究了在不确定环境中岛式交流微电网的电压和频率恢复的均方平均共识,并提供了准确的比例真正的力量共享。我们提出的共识协议包含两个部分:代理的状态反馈以及DG及其相邻DG的相对状态。最后,在MNTLAB / SimPowerSystems中进行了仿真研究,以评估控制律的性能。仿真结果和与以前的工作比较表明,该方法在调节微电网电压和频率以及提供准确的比例有功功率共享方面是有效的。

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