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Improving the response of a wheel speed sensor by using frequency-domain adaptive filtering

机译:通过使用频域自适应滤波改善轮速传感器的响应

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In this paper, a frequency-domain least-mean-square adaptive filter is used to cancel noise in a wheel speed sensor embedded in a car under performance tests. In this case the relevant signal is buried in a broad-band noise background, where we have little or no prior knowledge of the signal or noise characteristics. The results of the experiments show that the signal of interest and the noise (all forms of interference, deterministic, as well as stochastic) share the same frequency band and that the filter used significantly reduced the noise corrupting the information from the sensor while it left the true signal unchanged from a practical point of view. In this paper, a signal-to-noise ratio improvement higher than 40 dB is achieved. The results of the experiment show the importance of using digital signal processing when dealing with a signal corrupted by noise.
机译:在本文中,频域最小均方自适应滤波器用于在性能测试中消除嵌入在汽车中的车轮速度传感器中的噪声。在这种情况下,相关信号被掩埋在宽带噪声背景中,在那里我们对信号或噪声特性的了解很少或没有。实验结果表明,感兴趣的信号和噪声(所有形式的干扰,确定性以及随机信号)共享相同的频带,并且所使用的滤波器显着降低了噪声,从而破坏了传感器留下的信息。从实际角度看,真实信号不变。本文实现了高于40 dB的信噪比改善。实验结果表明,在处理被噪声破坏的信号时,使用数字信号处理非常重要。

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