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PMU-based real-time damping control system software and hardware architecture synthesis and evaluation

机译:基于PMU的实时阻尼控制系统软硬件架构综合与评估

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Low-frequency, electromechanically induced, inter-area oscillations are of concern in the continued stability of inter-connected power systems. Wide Area Monitoring, Protection and Control (WAMPAC) systems based on wide-area measurements such as synchrophasor (C37.118) data can be exploited to address the inter-area oscillation problem. This work develops a hardware prototype of a synchrophasor-based oscillation damping control system. A Compact Reconfigurable Input Output (cRIO) controller from National Instruments is used to implement the real-time prototype. This paper presents the design process followed for the development of the software architecture. The design method followed a three step process of design proposal, design refinement and finally attempted implementation. The goals of the design, the challenges faced and the refinements necessary are presented. The design implemented is tested and validated on OPAL-RT's eMEGASIM real-time simulation platform and a brief discussion of the experimental results is included.
机译:低频,机电感应的区域间振荡在互连的电源系统的持续稳定性中令人担忧。可以利用基于广域测量(例如同步相量(C37.118)数据)的广域监视,保护和控制(WAMPAC)系统来解决区域间振荡问题。这项工作开发了基于同步相量的振荡阻尼控制系统的硬件原型。美国国家仪器公司的紧凑型可重配置输入输出(cRIO)控制器用于实现实时原型。本文介绍了用于软件体系结构开发的设计过程。设计方法遵循设计建议,设计改进和最终尝试实现的三个步骤。介绍了设计目标,面临的挑战和必要的改进。实现的设计在OPAL-RT的eMEGASIM实时仿真平台上经过测试和验证,并简要讨论了实验结果。

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