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An Improved Measurement Method for Wideband Multi-Frequency Signal

机译:一种改进的宽带多频信号测量方法

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Interharmonics will generate severe mutual interferences and result in measurement errors in wideband multi-frequency signal measurement. Furthermore, the parameters of fundamental wave can also be impacted by its adjacent interharmonics. Under asynchronous sampling condition, the side lobe leakage of fundamental and harmonic components will make the interharmonic components more complicated. To address this issue, this paper proposed a method for wideband multi-frequency signal measurement. First, the multi-interharmonic model was established, and the spectrum separation and measurement (SSM) algorithm was introduced. Then, a quasi-synchronous sampling method can be achieved based on SSM. The complexity of interharmonics is reduced by using the quasi-synchronous sampling process, which can greatly inhibits the fundamental and harmonic interferences. The proposed method has been validated by the synthetic signal. The results show that the dense interharmonics can be identified and measured with relatively high precision.
机译:间谐波会产生严重的相互干扰,并导致宽带多频信号测量中的测量误差。此外,基波的参数也可能受到其相邻间谐波的影响。在异步采样条件下,基波和谐波分量的旁瓣泄漏将使间谐波分量更加复杂。为了解决这个问题,本文提出了一种宽带多频信号测量的方法。首先,建立了多重间谐波模型,并介绍了频谱分离与测量(SSM)算法。然后,可以实现基于SSM的准同步采样方法。通过使用准同步采样过程,可以降低间谐波的复杂性,从而可以极大地抑制基波和谐波干扰。所提出的方法已通过合成信号验证。结果表明,可以以较高的精度识别和测量密集的间谐波。

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