微电网
电压降
控制器(灌溉)
工程类
MATLAB语言
控制理论(社会学)
分布式发电
能源管理
控制工程
需求响应
能源管理系统
电压
计算机科学
汽车工程
可靠性工程
控制(管理)
能量(信号处理)
电压调节器
电
电气工程
操作系统
人工智能
可再生能源
统计
生物
数学
农学
作者
Souvik Bera,Sourav Chakraborty,Susmita Kar,Subhransu Ranjan Samantaray
标识
DOI:10.1109/tsg.2022.3222490
摘要
Unevenly distributed loads at different phases may lead to stability issues and incur high losses in a low inertial microgrid with a rise in Voltage Unbalance (VU). Thus, a suitable control mechanism is mandatory for stable microgrid operation and mitigating VU under peak and off-peak loading conditions. This paper presents a hierarchical control mechanism that includes a primary Droop-based Positive-Negative Sequence Compensation (PNSC) approach and a secondary controlling technique implemented using Demand Side Management (DSM). Besides mitigating VU, DSM also performs effective energy management by manipulating Thermostatically Controlled Loads (TCLs) and Electric Vehicle Charging stations (EVCs), with specific emphasis on the Thermal Comfort (TC) of customers. The primary controller's stability is also examined to test and validate its potential to mitigate VU during off-peak loading. Furthermore, a comprehensive analysis of the proposed hierarchical controller is performed with several dynamics taken into account. Moreover, the control technique is designed to mitigate generation and demand mismatch while adhering to IEC-61000-3-13. The effectiveness of the proposed control framework is tested using a modified IEEE-13 bus system in a MATLAB/ Simulink and Digsilent PowerFactory environment. Further the Hardware in Loop (HIL) is done in OPAL-RT to validate the real time performance of the system.
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