基于自适应V-I下垂特性的分布式事件触发控制策略在交流微电网中的精确负荷分担

Mohammad Sadegh Golsorkhi, Masoud Hajian, M. Savaghebi
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引用次数: 0

摘要

本文提出了一种新的分布式事件触发控制机制,用于孤岛交流微电网的精确负荷分担和电压调节。控制结构由两层组成。初级控制层利用V-I下垂控制策略协调分布式能源(DERs)的输出电流。在这种方法中,所有der都同步到一个共同的旋转参考系。为了实现DER之间的比例负载分担,对于每个DER,根据d轴和q轴电流的下垂特性确定输出电压的d和q分量。为了消除线路电压降引起的负荷分担,采用分布式二次控制方案改变各DER的下垂特性斜率。从控制器采用事件触发通信策略,大大减少了数据交换,节省了带宽。仿真结果表明,该方法具有平滑的动态性能和高效的网络利用率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Distributed Event-Triggered Control Strategy Based on Adaptive V-I Droop Characteristic for Accurate Load Sharing in AC Microgrids
This paper presents a new distributed event- triggered control mechanism for accurate load sharing and voltage regulation in islanded AC microgrids (MGs). The control structure is composed of two layers. The primary control level coordinates the output current of the Distributed Energy Resources (DERs) by utilizing the V-I droop control strategy. In this method, all DERs are synchronized to a common rotating reference frame. To realize proportional load sharing among the DERs, for each DER, the d and q components of the output voltage are determined in accordance to droop characteristics of the d and q axis currents. To eliminate the load sharing caused by the line voltage drops, the slope of the droop characteristic of each DER is altered by means of a distributed secondary control scheme. The secondary controller utilizes an event-triggered communication strategy, which remarkably decreases the exchanged data and saves bandwidth. Simulation results show that the proposed method favors smooth dynamic performance and efficient network utilization.
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