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A Low-Cost Fault-Tolerant Real, Reactive, and Apparent Power Measurement Technique Using Microprocessor

机译:使用微处理器的低成本容错有功,无功和视在功率测量技术

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Errors may creep in when measuring power by conventional methods due to the inductance and capacitance of the coils and the induced eddy current in the metal parts of the instruments through the alternating magnetic field of the current coil. Apart from these, if a fault occurs in any of the potential transformer secondary circuits or the potential coil of the measuring equipment, a conventional meter cannot detect it, which results in underregistration. In this paper, a microprocessor-based threephase real, reactive, and apparent power measurement system is developed, which displays the power being fed to a load under both normal and faulty conditions. The microprocessor provides a simple, accurate, reliable, and economical solution to these problems. A framework of the hardware circuitry and the assembly language program for the evaluation of power values is given, and the problems to which attention should be paid to execute the proposed algorithm using the microprocessor are discussed. Illustrative laboratory test results confirm the validity and accurate performance of the proposed method in real-time.
机译:当通过常规方法测量功率时,由于线圈的电感和电容以及通过电流线圈的交变磁场在仪器的金属部件中感应出的涡流,误差可能会蔓延。除此之外,如果在任何一个电位互感器二次电路或测量设备的电位线圈中发生故障,传统的电表都无法检测到,从而导致记录不足。在本文中,开发了一种基于微处理器的三相有功,无功和视在功率测量系统,该系统可以显示正常和故障情况下馈入负载的功率。微处理器为这些问题提供了一种简单,准确,可靠和经济的解决方案。给出了用于评估功率值的硬件电路和汇编语言程序的框架,并讨论了使用微处理器执行所提出算法时应注意的问题。说明性的实验室测试结果证实了所提方法的有效性和实时性。

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