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精确消除衰减直流分量误差的改进算法
An Improved Algorithm for Exactly Eliminate the Decaying DC Component Error
【摘要】 传统全周傅氏算法在直接处理含有指数衰减直流分量的电力系统故障信号时会产生较大误差,针对这个问题,提出了消除其误差的改进傅氏算法.该算法基于包含衰减分量的输入信号在一个周期内积分值及采样数据的求和不为零的原理,在计算衰减分量误差的过程中不需要增加采样点和任何近似计算,就可以求出衰减直流分量对傅氏算法带来的误差及衰减参数,将衰减分量造成的误差从故障输入信号的傅氏算法结果值中减去.仿真结果表明,该算法可以获得精确的基波及各次谐波相关参数,可应用于电力系统谐波在线分析.
【Abstract】 When the traditional full-cycle Fourier algorithm is directly used to process the power system fault signal including the decaying DC component,some errors will be produced. Thus,an improved Fourier algorithm which could eliminate the errors was proposed. This algorithm was based on the principle that integration of the input signal including the decaying DC component and summation of the sampled data were not zero in a full-cycle. This algorithm did not need addition of the sampled data and the approximation calculation in its derivation process,and could calculate the errors caused by the decaying DC component and its parameters. The errors caused by the decaying DC component could be eliminated from the results of the input fault signal. The simulation results showed that the parameters of fundamental frequency component and every harmonics can be accurately obtained,and the proposed algorithm can be used in power system on-line harmonic analysis.
【Key words】 decaying DC component; full-cycle Fourier algorithm; harmonic component; sampled data; Lagrange interpolation;
- 【文献出处】 东北大学学报(自然科学版) ,Journal of Northeastern University(Natural Science) , 编辑部邮箱 ,2014年12期
- 【分类号】TM744
- 【被引频次】3
- 【下载频次】117