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A novel algorithm of instantaneous symmetrical components based on trigonometric function transformation

机译:基于三角函数变换的瞬时对称分量新算法

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With the method of instantaneous symmetrical components, positive, negative and zero sequence components can be gained. The traditional instantaneous symmetrical components are usually implemented under dq0 synchronization reference frame on condition that low-pass filter is adopted in, which causes aggravated dynamic performance. To solve this problem, this paper presents a novel algorithm of instantaneous symmetrical components, and gives its corresponding equations and results. The principal of proposed algorithm is based on ab0 static axis. By trigonometric function transform method, the positive, negative and zero sequence components are deduced as a sum of sine and cosine, both of them with a multiplier factor. According to this analysis, three-phase sequence components can be solved out by using of variable step-size LMS adaptive filter. The dynamic and accuracy performance is testified by the results of simulation in unsymmetrical faults and short circuit faults, which prove this algorithm is suitable for unsymmetrical faults in power system.
机译:利用瞬时对称分量的方法,可以获得正,负和零序分量。传统的瞬时对称分量通常在采用低通滤波器的情况下在dq0同步参考帧下实现,这会导致动态性能恶化。为了解决这个问题,本文提出了一种新颖的瞬时对称分量算法,并给出了相应的方程式和结果。该算法的原理是基于ab0静态轴。通过三角函数变换法,将正序,负序和零序分量推导为正弦和余弦之和,二者均具有乘数因子。根据该分析,可以通过使用可变步长的LMS自适应滤波器来解决三相序列分量。通过非对称故障和短路故障的仿真结果证明了该算法的动态性和准确性,证明了该算法适用于电力系统中的非对称故障。

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