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A Hierarchical Regionalization-Based Load Shedding Plan to Recover Frequency and Voltage in Microgrid

机译:基于分层区域化的减载计划以恢复微电网中的频率和电压

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摘要

In microgrids, where the holistically centralized techniques do not meet the speed requirement, regionalization can be a viable solution to improve and speed up protection and control applications. This paper presents a fast regionalized approach to mitigate the microgrid voltage and frequency deviations simultaneously. The regionalization technique is on the basis of a multidimensional distance criterion known as Mahalanobis index which can be executed at several load levels in a parallel manner. In contrast to the existing district-based methods which lead to unified areas from the geographic point of view, the new technique regionalizes the network without enforcing geographic distance condition, with more degree of freedom. This feature assures faster and more effective voltage and frequency recovery. Since the load model inlfuences the voltage and frequency of the grid particularly in abnormal conditions, a hybrid load model dedicated to low-voltage distribution systems is employed here. To appraise and compare the performance and accuracy of the proposed plan with an existing one, the standard IEEE 37-bus distribution system is assayed. The steady state results and dynamic responses attest to the superiority of the proposed plan and guarantee satisfactory fulfillment for real-world practices.
机译:在整体集中式技术无法满足速度要求的微电网中,区域化可以成为改善和加快保护与控制应用的可行解决方案。本文提出了一种快速区域化的方法来同时缓解微电网的电压和频率偏差。区域化技术基于称为Mahalanobis索引的多维距离标准,可以在多个负载级别以并行方式执行。与现有的基于地区的方法从地理角度来看导致统一区域相比,该新技术将网络区域化,而无需执行地理距离条件,具有更大的自由度。此功能可确保更快,更有效的电压和频率恢复。由于负载模型特别是在异常情况下影响电网的电压和频率,因此在此采用专用于低压配电系统的混合负载模型。为了评估和比较提议的计划与现有计划的性能和准确性,对标准的IEEE 37总线分配系统进行了分析。稳态结果和动态响应证明了所提出计划的优越性,并保证了对实际操作的满意实现。

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