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PROCESSING OF NON-STATIONARY SIGNAL USING LEVEL-CROSSING SAMPLING

机译:使用水平交叉采样处理非静止信号

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The spectral characteristics of multimedia signals typically vary with time. Preferably, the sampling density of them would comply with instantaneous bandwidth of signal. The paper discusses the level-crossing sampling principle, which provides such capability for analog-to-digital conversion. As the captured samples are spaced non-uniformly, the appropriate digital signal processing is required. The non-stationary signal is characterized by time-frequency representation. Its classical approaches are inspected for applicability to analyze the data obtained by level-crossing sampling. Several enhancements of short-time Fourier transform approach are proposed, which are based on the idea to minimize the reconstruction error not only at sampling instants, but also between them with the same accuracy. Additional benefits are gained if the instantaneous spectral range of analysis is complied with local sampling density: artifacts are removed, complexity of calculations is decreased. The performance of algorithms is demonstrated by simulations. Presented research can be attractive for clock-less designs, which receive now an increasing interest. Their promising advantages can play a significant role in future electronics' development.
机译:多媒体信号的光谱特性通常随时间变化。优选地,它们中的采样密度将遵守信号的瞬时带宽。本文讨论过电平采样原理,这对于模拟 - 数字转换提供了这样的能力。由于所捕获的样本间隔不均匀,需要适当的数字信号处理。非平稳信号的特征在于,时频表示。其经典方法被检查为适用于分析由电平交叉采样获得的数据。短时傅立叶变换方案的若干改进提出,这是基于这样的理念与相同的精度,尽量减少不仅在采样时刻,而且他们之间的重构误差。如果分析的瞬时光谱范围与本地采样密度符合额外的好处是得到:工件被除去,计算的复杂性降低。的算法的性能通过仿真证明。提出研究可以为无时钟设计,现在收到的兴趣越来越大的吸引力。自己看好的优势可以发挥在未来电子产品的发展一个显著的作用。

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