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A digitally-controlled, real-time, analog power-system simulator for closed-loop protective relaying testing

机译:用于闭环保护继电器测试的数字控制,实时,模拟电源系统模拟器

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摘要

A power-system simulator is described that uses a control computer to configure an electronic analog model of a three-phase symmetrical power system and to set the model parameters. The model closely represents the dynamics of the real world up to 3 kHz. Precision high-power amplifiers convert the low-level analog signals to supply the protective relays under test. The design has been influenced by the key feature of closed-loop operation, with the relays functioning dynamically and in real time with the model. Nonlinearities are represented where significant, including the fault, transformer, arrester, and series-capacitor protection modules. The long-line transmission models represent the traveling-wave phenomena. Numerous system configurations can be selected. The data-acquisition system utilizes four digital computers, storing analog data at up to 25 kHz rate. The computers also analyze and manipulate the analog and event data and control a color plotter and printer. The emphasis of the discussion is on the analog models and the power amplifier designs.
机译:描述了一种电力系统仿真器,其使用控制计算机来配置三相对称电力系统的电子模拟模型并设置模型参数。该模型紧密地代表了高达3 kHz的真实世界的动态。精密大功率放大器将低电平模拟信号转换为被测保护继电器。该设计受到闭环运行关键特征的影响,继电器随模型动态地实时运行。非线性表示在重要位置,包括故障,变压器,避雷器和串联电容器保护模块。长线传输模型代表行波现象。可以选择许多系统配置。数据采集​​系统利用四台数字计算机,以高达25 kHz的速率存储模拟数据。这些计算机还分析和处理模拟和事件数据,并控制彩色绘图仪和打印机。讨论的重点是模拟模型和功率放大器设计。

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