Measurement of power flow variations in Gaussian plane using phasor measuring unit

Ushnik Chakrabarti, A. Chakrabarti, Sudhangshu Sarkar
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引用次数: 2

Abstract

In order to avoid large scale failure, it is necessary to monitor the widespread and complex performance of interconnected power grid system in real time. In case of bulk power system, the operation of Protective Relays and the Circuit Breakers are fast enough for secured performance but tracking of the system parameters during an event is beyond the scope of such devices. So, real time tracking before an event and quick analysis for potential failure of the system at the time of disturbances is quite difficult. Modernization of technology provides us with instruments to sample the continuous-time analog signal into discrete-time digital signal with the help of a device called Phasor Measuring Unit (PMU). As a result, it is also possible to estimate the dynamic phasor of the system and to determine the frequency and the Rate of Change of Frequency (ROCOF) of the system within a specific frequency zone. The purpose of this paper is to present a mechanism for continuous observation of the interconnected power system within a specific frequency zone and detection of its nature with improved accuracy using Phasor Measuring Unit (PMU). Having the Rate of Change of Frequency as the prime detector of disturbances at the interconnected grid system in Gaussian plane, this should facilitate the continuous observation and a system protection scheme which is more efficient. This should minimize the sudden damages of the system equipments due to abnormal behavior of the bulk interconnected electrical power system.
用相量测量装置测量高斯平面的潮流变化
为了避免大规模故障的发生,有必要对互联电网系统广泛而复杂的性能进行实时监测。在大容量电力系统中,保护继电器和断路器的运行速度足以确保性能,但在事件期间跟踪系统参数超出了此类设备的范围。因此,在事件发生之前进行实时跟踪并在发生干扰时对系统的潜在故障进行快速分析是相当困难的。技术的现代化为我们提供了仪器,可以在称为相量测量单元(PMU)的设备的帮助下将连续时间模拟信号采样为离散时间数字信号。因此,还可以估计系统的动态相量,并确定系统在特定频率区域内的频率和频率变化率(ROCOF)。本文的目的是提出一种利用相量测量单元(PMU)对特定频率区域内的互联电力系统进行连续观测并以更高的精度检测其性质的机制。在高斯平面上,将频率变化率作为互联电网系统扰动的主要检测器,有利于连续观测和系统保护方案的高效。这样可以最大限度地减少由于大容量互联电力系统的异常行为而导致的系统设备的突然损坏。
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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