一种智能电网多种参数测量的精确电路

Md Sarfraz Khusroo, Anwar Ullah Khan, Tarikul Isalm
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摘要

本文研究了智能电网中交流功率(有功、无功和视在功率)、功率因数和负载参数(电阻、电感)测量的接口电路。无功功率测量是各种可再生能源并网的一项重要要求。为了确定有功功率和无功功率的实际值,需要输出的平均值正交分量和同相分量。基于所提出的测量方案,我们分别获得了与系统有功功率和无功功率成正比的正交和同相两个电压信号的平均值。数学证明支持了所提出的方法,LTspice软件的仿真结果准确地验证了所提出的技术。在不同的感应负载下进行了实验,测量了各种参数。仿真结果表明,无功功率测量的最大误差在1.5%以下。该方法具有频率不变性、成本效益高、工作简单、元件数量少、响应速度快(在一个功率周期内)和在线测量等特点。
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An Accurate Circuit for the Measurements of Multiple Smart Grid Parameters
This paper deals with developing an interfacing circuit for measuring A.C. powers (active, reactive, and apparent power), power factors, and load parameters (resistance, inductance) in a smart grid. The reactive power measurement is an important requirement with the interconnection of various renewable energy sources to the grid. In order to determine the actual value of active and reactive power, the average value quadrature and in-phase components of output are required. Based on the proposed measurement scheme, we obtain an average value of two voltage signals, quadrature and in-phase, which are proportional to the active and reactive power of the system, separately and independently. Mathematical proofs back the proposed method, and the simulation results obtained from LTspice software precisely verify the proposed technique. Experiments were conducted for different inductive loads for the measurement of various parameters. Simulation results show that the maximum error of reactive power measurement is below 1.5%. The major contributions of the proposed method are frequency invariance, cost effective, easy working, least component count, quick response (within a power cycle), and online measurement features.
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