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Adaptive rate filtering a computationally efficient signal processing approach

机译:自适应速率滤波一种计算有效的信号处理方法

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摘要

Filtering is a basic operation, almost required in every signal processing system. The classical filtering is time-invariant, the sampling frequency and the filter order remains unique. Therefore it can render a useless increase of the processing activity, especially in the case of sporadic signals. In this context, adaptive rate filtering techniques, based on a level crossing sampling are devised. They adapt the sampling frequency and the filter order by analyzing the input signal local variations. They correlate the processing activity to the signal variations. The computational complexities and output qualities of the proposed techniques are compared to the classical one for a speech signal. Results show a drastic computational gain, of the proposed techniques compared to the classical ones, along with a comparable quality. It promises a significant processing power reduction of the proposed solutions compared to the classical ones.
机译:滤波是基本操作,几乎在每个信号处理系统中都需要。经典滤波是时不变的,采样频率和滤波器阶数保持唯一。因此,这可能导致处理活动的无用增加,尤其是在零星信号的情况下。在这种情况下,设计了基于水平交叉采样的自适应速率滤波技术。它们通过分析输入信号的局部变化来调整采样频率和滤波器阶数。它们将处理活动与信号变化相关联。将所提出技术的计算复杂度和输出质量与用于语音信号的经典技术进行比较。结果表明,与经典技术相比,所提议技术的计算量巨大,并且质量相当。与经典解决方案相比,它保证了所提出解决方案的处理能力显着降低。

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