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Design and performance evaluation of hierarchical communication network for wide area measurement system

机译:广域测量系统分层通信网络的设计与性能评估

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Over the years, renewable energy has experienced great growth and attention. The renewable power plants are distributed over large geographical areas and the number of renewable power plants is exponentially increasing. These distributed energy sources may make power system complex and unstable. Further, monitoring and control by existing system such as supervisory control and data acquisition (SCADA) system is facing the limitation to capture power system dynamics. In order to combat these problems, phasor measurement units (PMUs) are installed at power plants and substations to implement wide area measurement system (WAMS). To get accurate, high sampling frequency and synchronized data from PMUs at distributed locations, the WAMS needs high speed and reliable communication network. The communication network plays an important role in WAMS because real-time synchrophasor data and control messages are transmitted through communication network. In this paper, we present a hierarchical communication network architecture for WAMS. The proposed communication network consists of three network levels: generation, substation, and control center. To evaluate the performance of the proposed network, communication network for WAMS is modeled and simulated through OPNET. The simulation results are validated by comparing with the results of numerical analysis. The network performance is evaluated in terms of network delay under various link bandwidth and background traffic.
机译:多年来,可再生能源得到了极大的发展和关注。可再生能源发电厂分布在广阔的地理区域,可再生能源发电厂的数量呈指数增长。这些分散的能源可能会使电力系统变得复杂和不稳定。此外,通过诸如监督控制和数据采集(SCADA)系统之类的现有系统的监视和控制正面临捕获电力系统动态的限制。为了解决这些问题,在电厂和变电站中安装了相量测量单元(PMU),以实现广域测量系统(WAMS)。为了从分布位置的PMU中获得准确,高采样频率和同步数据,WAMS需要高速且可靠的通信网络。由于实时同步相量数据和控制消息是通过通信网络传输的,因此通信网络在WAMS中起着重要的作用。在本文中,我们提出了WAMS的分层通信网络体系结构。拟议的通信网络包括三个网络级别:发电,变电站和控制中心。为了评估所提出的网络的性能,通过OPNET对WAMS的通信网络进行了建模和仿真。通过与数值分析结果进行比较来验证仿真结果。根据各种链路带宽和背景流量下的网络延迟评估网络性能。

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