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Design and implementation of a high accuracy sampling wattmeter under non-sinusoidal and off-nominal frequency conditions

机译:非正弦和非标称频率条件下高精度采样电表的设计与实现

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摘要

Errors may creep in when measuring active power under non-sinusoidal and off-nominal frequency conditions by a conventional regularly spaced sampling digital wattmeter (RSSDW) due to the existence of higher order voltage and current harmonics, and asynchrony between the signal fundamental frequency and the sampling rate. This paper presents design and implementation of a modified regularly spaced sampling digital wattmeter, called M-RSSDW, immune to above mentioned drawbacks of the conventional RSSDW. The proposed method utilizes a modified/first degree digital integrator design technique, suitable for the distorted power system signals. The harmful truncation errors of asynchronous sampling have been reduced using numerical compensation method. Compared with the well-established technique such as Liangs' method, the proposed algorithm provides higher degree of immunity and insensitivity to harmonics and frequency deviation. Structural simplicity, wide range of application and reduced computational load are other salient features of the proposed method. Based on simulation studies, the performance and validity of the proposed algorithm at different operating conditions have been presented and its accuracy and response time have been compared with the Liangs' approach.
机译:由于存在较高阶的电压和电流谐波,以及信号基频与噪声之间的异步性,当使用常规的规则间隔采样数字功率计(RSSDW)在非正弦和非标称频率条件下测量有功功率时,误差可能会蔓延。采样率。本文提出了一种改进的规则间隔采样数字电表,称为M-RSSDW的设计和实现,该表克服了传统RSSDW的上述缺点。所提出的方法利用了适用于失真的电力系统信号的改进的/一级数字积分器设计技术。使用数值补偿方法可以减少异步采样的有害截断误差。与良方法等成熟的技术相比,该算法具有更高的抗扰度和对谐波和频率偏差的不敏感性。结构简单,应用范围广和计算量减少是该方法的其他显着特征。在仿真研究的基础上,给出了该算法在不同工况下的性能和有效性,并将其准确性和响应时间与Liangs方法进行了比较。

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