逆变器主导动态微电网的分布平均观测

Yuhua Du, Xiaonan Lu, Bo Chen, Jianzhe Liu, Xiongfei Wang, F. Blaabjerg
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引用次数: 1

摘要

基于共识的分布式平均观测被广泛应用于基于逆变器的自治微电网中分布式发电机之间的分散协调。然而,其观测精度受到通信延迟的影响。这种观测误差很难检测,并且可能使系统运行状态(例如,DG工作电压)偏离其期望的参考值。本文量化了延迟动态一致性算法的通信延迟与稳态观测误差之间的关系。值得一提的是,所研究的系统是在动态mg环境下自主运行的。与传统mgg相比,动态mgg在可重构的网络物理网络中运行。通过网络物理重构,采用最优系统拓扑,使观测误差最小化。详细的控制图设计用于观察物理网络中的DG平均工作电压,而测量和控制参考通过网络通过通信延迟交换。在Simulink/MATLAB的12总线测试系统上验证了所提出的重构方法和详细的控制器设计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Distributed Average Observation in Inverter Dominated Dynamic Microgrids
Consensus-based distributed average observation has been widely used in decentralized coordination among distributed generators (DGs) in inverter-based autonomous microgrids (MGs). However, its observation accuracy suffers from communication delays. Such observation errors are hard to detect and could deviate the system operation states (e.g., DG operating voltage) from their desired references. This work quantifies the relationship between communication delays and the steady-state observation errors of the delayed dynamic consensus algorithm. It is worth mentioning that system under study operates autonomously in the context of dynamic MGs. Compared to conventional MGs, dynamic MGs operate with reconfigurable cyber-physical networks. The observation errors are minimized by adopting the optimal system topology through cyber-physical network reconfiguration. Detailed control diagrams are designed to observe the average DG operating voltage in the physical networks, while measurements and control references are exchanged with communication delays through the cyber network. The proposed reconfiguration approach along with detailed controller designs are validated on a 12-bus test system in Simulink/MATLAB.
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