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Distributed Optimal Generation and Load-Side Control for Frequency Regulation in Power Systems

机译:电力系统频率调节的分布式最优生成和负载侧控制

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摘要

In order to deal with issues caused by the increasing penetration of renewable resources in power systems, this article proposes a novel distributed frequency control algorithm for each generating unit and controllable load in a transmission network to replace the conventional automatic generation control. The targets of the proposed control algorithm are twofold. First, it is to restore the nominal frequency and scheduled net interarea power exchanges after an active power mismatch between generation and demand. Second, it is to optimally coordinate the active powers of all controllable units in a distributed manner. The designed controller only relies on local information, computation, and peer-to-peer communication between cyber-connected buses, and it is also robust against uncertain system parameters. Asymptotic stability of the closed-loop system under the designed algorithm is analyzed by using a nonlinear structure-preserving model including the first-order turbine-governor dynamics. Finally, case studies validate the effectiveness of the proposed method.
机译:为了处理由电力系统中可再生资源的渗透率普及的普及,本文提出了一种新颖的分布式频率控制算法,用于每个产生单元和传输网络中的可控负载来替换传统的自动生成控制。所提出的控制算法的目标是双重的。首先,它是在发电和需求之间有功功率不匹配后恢复标称频率和预定的净Interrarea功率交换。其次,它是以分布式方式最佳地协调所有可控单元的有源功率。设计的控制器只依赖于网络连接总线之间的本地信息,计算和对等通信,并且对不确定的系统参数也是坚固的。通过使用包括一阶涡轮机调速器动态的非线性结构保存模型分析设计算法下闭环系统的渐近稳定性。最后,案例研究验证了所提出的方法的有效性。

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