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Time-Varying Pole-Radius IIR Multi-Notch Filters with Improved Performance

机译:具有改进性能的时变极半径IIR多陷波滤波器

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In signal processing applications, it is often required to have multi-notch filters (MNFs) which simultaneously possess an excellent quality factor, 'Q', and a brief transient response. Though, the duration of transient response can be improved by decreasing 'Q' which, however, also degrades the quality of the filter. Due to their contradictory nature, dealing with 'Q' and transient response becomes a difficult task. This paper is a sincere attempt to address this problem for MNFs by exploring time-varying pole-radius infinite impulse response MNF designs employing a hyperbolic tangent sigmoid (HTS) function-based pole-radius variation. Two-notch and three-notch filters, based on HTS function, are designed, analyzed for stability and tested for transient suppression, selectivity and noise removal. Experimental validations supported by simulations on sinusoids and ECG signals are performed in the LabVIEW (TM) environment and have been presented as complete performance assessment. In contrast to the recently reported and traditional MNF designs, significant performance enhancements were recorded for the proposed designs. Therefore, based on the presented investigations, it is concluded that the proposed MNFs are efficient designs for removing harmonics from sinusoids and ECG signals.
机译:在信号处理应用中,通常需要有多个陷波滤波器(MNF),它们同时具有出色的品质因数“ Q”和短暂的瞬态响应。虽然,可以通过减小“ Q”来改善瞬态响应的持续时间,但是这也会降低滤波器的质量。由于它们的矛盾性质,处理“ Q”和瞬态响应成为一项艰巨的任务。本文是通过探索时变的极半径无限脉冲响应MNF设计的真诚尝试,该方法采用基于双曲正切S型(HTS)函数的极半径变化的MNF设计。设计基于HTS功能的两陷波和三陷波滤波器,进行稳定性分析并测试瞬态抑制,选择性和噪声消除。在LabVIEW(TM)环境中进行了正弦波和ECG信号仿真支持的实验验证,并已作为完整的性能评估进行了介绍。与最近报道的和传统的MNF设计相比,建议的设计在性能上有显着提高。因此,基于提出的研究,可以得出结论,提出的MNF是用于去除正弦波和ECG信号谐波的有效设计。

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