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- W4290927768 abstract "This chapter addresses more complicated circumstances in distributed optimal control with nonideal communication. It considers the distributed voltage control problem of active distribution networks (ADNs). Due to the burst of distributed energy resources (DERs), the volatile renewable generation has brought a significant challenge to not only active power regulation but also reactive power and voltage control. The chapter aims to develop an asynchronous distributed voltage control (ASDVC) based on the partial primal-dual (PPD) gradient algorithm. The PPD gradient algorithm is utilized to design the controller. The voltage control in an ADN aims to minimize the voltage mismatch by regulating active or reactive power outputs of controllable DERs. The chapter justifies the convergence of the ASDVC algorithm. It treats the ASDVC as a randomized block-coordinate fixed-point iteration problem with delayed information. The chapter proves that the algorithm converges to an optimal solution to the optimal voltage regulation problem." @default.
- W4290927768 created "2022-08-13" @default.
- W4290927768 date "2022-08-09" @default.
- W4290927768 modified "2023-09-26" @default.
- W4290927768 title "Cyber Restrictions: Imperfect Communication in Voltage Control of Active Distribution Networks" @default.
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- W4290927768 doi "https://doi.org/10.1002/9781119827962.ch8" @default.
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