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Parameter Estimation of Multiterminal Transmission Lines Using Joint PMU and SCADA Data

机译:基于联合PMU和SCADA数据的多终端传输线参数估计

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摘要

This paper focuses on the parameter estimation of transmission lines which is an essential prerequisite for system studies and relay settings. Synchrophasor measurements have shown promising potentials for the transmission line parameter estimation. Majority of existing techniques entail existence of phasor measurement units (PMUs) at both ends of a given transmission line; however, this assumption rarely holds true in nowadays power networks with few installed PMUs. In this paper, a practical technique is proposed for the estimation of transmission line parameters while the required data are phasor measurements at one end of a given line and conventional magnitude measurements at the other end. The proposed method is thus on the basis of joint PMU and supervisory control and data acquisition (SCADA) measurements. A non-linear weighted least-square error (NWLSE) algorithm is employed for the maximum-likelihood estimation of parameters. The approach is initially devised for simple transmission lines with two terminals; then, it is extended for three-terminal lines. Numerical studies encompassing two- and three-terminal lines are conducted through software and hardware simulations. The results demonstrate the effectiveness of new technique and verify its applicability in present power networks.
机译:本文着重于传输线的参数估计,这是系统研究和继电器设置的必要前提。同步相量测量显示了传输线参数估计的潜力。现有技术的大多数要求在给定传输线的两端都存在相量测量单元(PMU)。然而,这种假设在如今很少安装PMU的电力网络中很少成立。在本文中,提出了一种实用的技术来估算传输线参数,而所需的数据是给定线一端的相量测量值,而另一端则是常规幅度测量值。因此,所提出的方法基于联合PMU以及监督控制和数据采集(SCADA)测量。非线性加权最小二乘误差(NWLSE)算法用于参数的最大似然估计。该方法最初设计用于具有两个端子的简单传输线。然后,将其扩展为三端线。通过软件和硬件仿真进行了涵盖两端子和三端子线的数值研究。结果证明了新技术的有效性,并验证了其在当前电网中的适用性。

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