Numerical relay development environment

M. Vinod, K. Satheesh, K. Madhusoodana, Guha Somnath
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引用次数: 6

Abstract

Advancements in application of digital signal processors in measurement and protection relaying schemes has evolved from many decades. New adaptive techniques are being developed for better power system protection. These techniques need to be tested on numerical relay test bench to analyze its accuracy and reliability under real time power system transient behavior. This paper presents generic numerical relay development environment comprising of newly developed relay and computer based hardware-in-the-loop test bench setup. The hardware is designed to accept data in IEEE COMTRADE format. Different power system operating conditions are simulated in MiPower software package and injected to the relay using National Instrument's NI 9263 converter modules and LabVIEW software package. Relaying scheme performance is analyzed in computer by event capture capability of the relay and serial communication with computer. Percentage bias generator differential scheme is implemented and tested in the setup. Results show stable and accurate performance of the hardware.
数字继电器开发环境
数字信号处理器在测量和保护继电保护方案中的应用已经发展了几十年。为了更好地保护电力系统,人们正在开发新的自适应技术。这些技术需要在数值继电器试验台上进行测试,以分析其在电力系统实时暂态行为下的准确性和可靠性。本文介绍了一种通用的数字继电器开发环境,该开发环境由新开发的继电器和基于计算机的半实物试验台组成。硬件被设计成接受IEEE COMTRADE格式的数据。在MiPower软件包中模拟不同的电力系统运行状态,并使用美国国家仪器公司的NI 9263转换器模块和LabVIEW软件包注入继电器。通过中继的事件捕获能力和与计算机的串行通信,分析了中继方案在计算机中的性能。实现了百分比偏置发生器差分方案,并在装置中进行了测试。结果表明,硬件性能稳定、准确。
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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