Real-time communication platform for Smart Grid adaptive Volt-VAR Optimization of distribution networks

M. Manbachi, A. Sadu, H. Farhangi, A. Monti, A. Palizban, F. Ponci, S. Arzanpour
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引用次数: 13

Abstract

This paper investigates a real-time communication platform for a Smart Grid adaptive Volt-VAR Optimization (VVO) engine. Novel VVO techniques receive inputs from Advanced Metering Infrastructure (AMI) to dynamically optimize distribution networks. As communication platform design and characteristics affect Smart Grid-based VVO performance in terms of control accuracy and response time, VVO ICT studies is essential for grid planners and/or power utilities. Hence, this paper primarily introduces a real-time co-simulated environment comprised of Smart Grid adaptive VVO engine, RTDS model and system communication platform using DNP3 protocol. This platform is built to test and asses the influence of different components included in Smart Grid monitoring and control system; namely the sensors, measurement units, communication infrastructure on the operation and control of VVO. Moreover, this paper uses a real-time platform to check the robustness of the monitoring and control applications for communication network considerations such as delays and packet loss. Next, this paper investigates how such a platform could look into communication issues while taking system requirements into consideration. A 33-node distribution feeder is employed to check system performance through communication parameters such as throughput and response time.
配电网自适应电压无功优化的智能电网实时通信平台
本文研究了智能电网自适应电压无功优化引擎的实时通信平台。新的VVO技术接收来自先进计量基础设施(AMI)的输入,以动态优化配电网。由于通信平台的设计和特性在控制精度和响应时间方面影响基于智能电网的VVO性能,因此VVO ICT研究对于电网规划者和/或电力公司至关重要。因此,本文主要介绍了一个由智能电网自适应VVO引擎、RTDS模型和采用DNP3协议的系统通信平台组成的实时协同仿真环境。该平台的建立是为了测试和评估智能电网监控系统中不同组件的影响;即传感器、测量单元、通信基础设施对VVO的运行和控制。此外,本文还利用实时平台对通信网络中时延、丢包等监控应用的鲁棒性进行了检验。接下来,本文研究了这样一个平台如何在考虑系统需求的同时研究通信问题。采用33节点分布馈线,通过吞吐量、响应时间等通信参数检查系统性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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