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Designing the Next Generation of Real-Time Control, Communication, and Computations for Large Power Systems

机译:设计用于大型电力系统的下一代实时控制,通信和计算

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摘要

The power grid is not only a network interconnecting generators and loads through a transmission and distribution system, but is overlaidwith a communication and control system that enables economic and secure operation. This multilayered infrastructure has evolved over many decades utilizing new technologies as they have appeared. This evolution has been slow and incremental, as the operation of the power system consisting of vertically integrated utilities has, until recently, changed very little. The monitoring of the grid is still done by a hierarchical design with polling for data at scanning rates in seconds that reflects the conceptual design of the 1960s. This design was adequate for vertically integrated utilities with limited feedback and wide-area controls; however, the thesis of this paper is that the changing environment, in both policy and technology, requires a new look at the operation of the power grid and a complete redesign of the control, communication and computation infrastructure. We provide several example novel control and communication regimes for such a new infrastructure.
机译:电网不仅是通过传输和分配系统将发电机和负载互连的网络,而且还覆盖有通信和控制系统,可实现经济且安全的运行。数十年来,这种多层基础架构利用新技术的出现不断发展。这种发展是缓慢而渐进的,因为直到最近,由垂直集成公用事业组成的电力系统的运行变化很小。网格的监视仍然是通过分层设计来完成的,它以几秒钟的扫描速率轮询数据,这反映了1960年代的概念设计。这种设计适用于反馈有限和广域控制的垂直集成公用事业。然而,本文的论点是,在政策和技术上不断变化的环境都需要对电网的运行进行重新审视,并对控制,通信和计算基础设施进行全面的重新设计。我们为这种新的基础设施提供了几种示例性的新颖控制和通信机制。

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