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首页> 外文期刊>IEEE Transactions on Instrumentation and Measurement >A computer-controlled load loss standard for calibrating high-voltage power measurement systems
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A computer-controlled load loss standard for calibrating high-voltage power measurement systems

机译:由计算机控制的负载损耗标准,用于校准高压功率测量系统

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摘要

A computer-controlled load loss standard, based on the current-comparator technique, for calibrating high-voltage power measurement systems is described. Measurements can be made at any power factor from zero lag through unity to zero lead, positive or negative power, at voltages up to 200 kV, currents up to 1000 A, and 50 or 60 Hz. The load loss standard features current-comparator-based components including a high-voltage active divider, a unity-gain integrator for producing an accurate and stable reactive component, a high-current transconductance amplifier with the ability to provide a highly accurate current to a circuit that is operated at high voltage, and a computer for control and data reduction. In a laboratory environment the load loss standard has an uncertainty of less than 10 ppm for both magnitude and phase. However, when used for on-site testing/calibration, due to temperature effects, its uncertainty is increased to less than 100 ppm in magnitude and 10 ppm in phase.
机译:描述了一种基于电流比较器技术的计算机控制的负载损耗标准,用于校准高压功率测量系统。可以在电压从200 kV,电流到1000 A以及50或60 Hz的任何功率因数下进行测量,从零延迟到单位零到零引线,正或负功率。负载损耗标准具有基于电流比较器的组件,其中包括高压有源分压器,用于产生精确稳定的无功分量的单位增益积分器,能够向驱动器提供高精度电流的大电流跨导放大器。在高压下工作的电路,以及用于控制和减少数据的计算机。在实验室环境中,负载损失标准的幅度和相位不确定度均小于10 ppm。但是,当用于现场测试/校准时,由于温度的影响,其不确定度会增加到小于100 ppm的幅度和小于10 ppm的相位。

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