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Synchronised Phasor Measurement Unit

机译:同步相量测量单元

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With the advent of real time Phasor Measurement Units (PMUs), synchronised phasor measurements are possible which allows monitoring of dynamic phenomena. PMU terminals installed in proper nodes of power systems enable increasing the transmission capacity. Also it improves the operational safety of the power system. The better measurement performance and system wide data for monitoring and presentation of power system dynamics provide the operator with real time phasor information for remedial actions. The design of a Synchronised Phasor Measurement Unit (PMU) based on a Digital Signal Processor is explained in this paper. The standard temporal reference of this system is generated with a signal of 1 pulse per second (1PPS) from a global positioning system (GPS). The algorithm used for the implementation of proposed system is Recursive Discrete Fourier Transform (DFT) algorithm. The simulation for the proposed algorithm in LabVIEW software is explained in this paper and the results obtained after simulation were also given. The developed Phasor Measurement Unit (PMU) provides phasor information (both magnitude and phase angle) of a given signal in real time. The information can be utilized to estimate and calculate the power system state.
机译:随着实时相量测量单元(PMU)的出现,同步相量测量成为可能,从而可以监视动态现象。安装在电力系统适当节点中的PMU终端可以增加传输容量。此外,它还提高了电源系统的操作安全性。更好的测量性能和用于监视和显示电力系统动态的全系统数据为操作员提供了实时相量信息,以进行补救措施。本文介绍了基于数字信号处理器的同步相量测量单元(PMU)的设计。该系统的标准时间参考是使用来自全球定位系统(GPS)的每秒1脉冲(1PPS)的信号生成的。用于实现所提出系统的算法是递归离散傅里叶变换(DFT)算法。本文介绍了在LabVIEW软件中对该算法的仿真,并给出了仿真后的结果。开发的相量测量单元(PMU)实时提供给定信号的相量信息(幅度和相角)。该信息可用于估计和计算电力系统状态。

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