Joint Frequency Regulation and Economic Dispatch Using Limited Communication

Jianan Zhang, E. Modiano
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引用次数: 1

Abstract

We study the performance of a decentralized integral control scheme for joint power grid frequency regulation and economic dispatch. We show that by properly designing the controller gains, after a power flow perturbation, the control achieves near-optimal economic dispatch while recovering the nominal frequency, without requiring any communication. We quantity the gap between the controllable power generation cost under the decentralized control scheme and the optimal cost, based on the DC power flow model. Moreover, we study the tradeoff between the cost and the convergence time, by adjusting parameters of the control scheme.Communication between generators reduces the convergence time. We identify key communication links whose failures have more significant impacts on the performance of a distributed power grid control scheme that requires information exchange between neighbors.
联合频率调节与有限通信经济调度
研究了电网联合调频和经济调度的分散积分控制方案的性能。我们表明,通过适当地设计控制器增益,在潮流扰动后,控制器在恢复标称频率的同时达到接近最优的经济调度,而不需要任何通信。基于直流潮流模型,定量计算了分散控制方案下的可控发电成本与最优发电成本之间的差距。此外,通过调整控制方案的参数,研究了成本与收敛时间之间的权衡。生成器之间的通信减少了收敛时间。我们确定了关键通信链路,其故障对需要邻居之间信息交换的分布式电网控制方案的性能有更大的影响。
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