交互式电网控制-通信框架的实现

S. Mazumder, K. Acharya, M. Tahir
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引用次数: 11

摘要

在不久的将来,智能电网有望随时随地提供高保真的潮流控制、自我修复以及能源保障和能源安全。这将需要一个无处不在的由普适计算和传感技术支持的分布式控制通信框架。然而,这种集成控制-通信框架的有效运行需要:(1)确保控制系统在稳定界下的性能与通信网络的动态网络容量之间达到最优平衡的“联合”优化策略;ii)划分功能以实现分布式或伪去中心化实现的机制。在本文中,提出了其中的一些问题,并提供了第一步方法的大纲,以及涉及均匀逆变器网络和规模微电网的案例研究。此外,还提出了一种新的节点架构,以演示实现控制通信框架的可能方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Towards Realization of a Control-Commnunication Framework for Interactive Power Networks
Smart grids in near future will be expected to provide high fidelity power-flow control, self healing, and energy surety and energy security anytime and anywhere. This will require a ubiquitous framework of distributed control-communication supported by pervasive computation and sensing technologies. However, effective operation of such an integrated control-communication framework will need i) a "joint" optimization strategy that ensures an optimal balance between performance of the control system under stability bound and the dynamic network capacity of the communication network; and ii) a mechanism for partitioning the functionality to achieve a distributed or pseudo-decentralized implementation. In this paper, some of these issues have been raised and an outine on the first-step approach has been provided along with case studies involving homogeneous inverter network and a scaled microgrid. A novel nodal architecture has been proposed as well to demonstrate a possible approach towards implementation of the control-communication framework.
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