Power-System Frequency and Stability Control using Decentralized Intelligent Loads

Daniel J. Trudnowski, Matt Donnelly, Eric Lightner
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引用次数: 133

Abstract

Modern power systems operate on the premise that the load is uncontrollable and that system voltage, frequency and stability are primarily maintained through control of the generation. In this paper, we challenge this premise by proposing a much more active role for intelligent loads specifically related to frequency control and dynamic stability. In modern systems the load is typically only controlled under severe stability conditions via load shedding. Recent research has demonstrated that many loads could cost-effectively become intelligent, allowing for the potential of the loads to more actively participate in system operation and control. The potential benefits of active load control are investigated. Also, reliability and implementation issues are explored. Fundamental analysis and multi-machine system simulation examples are used to demonstrate many of the issues
基于分散智能负载的电力系统频率与稳定性控制
现代电力系统是在负荷不可控的前提下运行的,主要通过对发电的控制来维持系统的电压、频率和稳定性。在本文中,我们通过提出智能负载在频率控制和动态稳定性方面更积极的作用来挑战这一前提。在现代系统中,负载通常只能在严格的稳定条件下通过减载来控制。最近的研究表明,许多负载可以经济有效地变得智能化,允许负载更积极地参与系统操作和控制的潜力。研究了主动负荷控制的潜在效益。此外,还探讨了可靠性和实现问题。基础分析和多机系统仿真示例用于演示许多问题
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