Multi-agent testbed for emerging power systems

M. Stanovich, S. Srivastava, D. Cartes, T. Bevis
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引用次数: 9

Abstract

Controls in power systems such as national utility grids, microgrids, and shipboard electrical infrastructures are evolving and conventional testbeds are inadequately outfitted for effective design, development, and testing. In particular, conventional power system control testbeds typically lack appropriate computational and data communication tools to quickly and accurately represent advanced control architectures. In this paper, we discuss experiences with a distributed control testbed by incorporating general purpose computational platforms and a more extensive data communications infrastructure. These components enhance the testbed by providing access to key technologies expected to be prevalent in emerging power systems and also simplify the implementation of sophisticated control architectures. Evaluation of the improved capabilities of the testbed is provided through two studies. The first explores the control capabilities for a shipboard power system through the use of hierarchical and distributed control structures. The second investigates the effect of data communication latencies on a control algorithm through a test case involving synchronization of multiple generators.
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新兴电力系统多智能体试验台
电力系统的控制,如国家公用电网、微电网和船上电力基础设施正在发展,传统的试验台不足以有效地设计、开发和测试。特别是,传统的电力系统控制试验台通常缺乏适当的计算和数据通信工具来快速准确地表示先进的控制体系结构。在本文中,我们通过整合通用计算平台和更广泛的数据通信基础设施来讨论分布式控制测试平台的经验。这些组件通过提供对新兴电力系统中普遍存在的关键技术的访问来增强测试平台,并简化复杂控制架构的实现。通过两项研究对改进后的试验台性能进行了评估。第一部分通过使用分层和分布式控制结构探讨了舰船电力系统的控制能力。第二部分通过涉及多个生成器同步的测试用例研究了数据通信延迟对控制算法的影响。
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