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Time Encoding of Bandlimited Signals: Reconstruction by Pseudo-Inversion and Time-Varying Multiplierless FIR Filtering

机译:带限信号的时间编码:伪反转和时变多平面冷杉过滤的重建

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We propose an entirely redesigned framework of bandlimited signal reconstruction for the time encoding machine (TEM) introduced by Lazar and Tóth. As the encoding part of TEM consists in obtaining integral values of a bandlimited input over known time intervals, it theoretically amounts to applying a known linear operator on the input. We then approach the general question of signal reconstruction by pseudo-inversion of this operator. We perform this task numerically and iteratively using projections onto convex sets (POCS). The algorithm can be implemented exactly in discrete time with multiplications that are all reduced to scaling by signed powers of two, thanks to the use of relaxation coefficients. Meanwhile, the algorithm achieves a rate of convergence similar to that of Lazar and Tóth. For real-time processing, we propose an approximate time-varying FIR implementation, which avoids the splitting of the input into blocks. We finally propose some preliminary semi-convergence analysis of the algorithm under data noise.
机译:我们提出了Lazar和Tóth引入的时间编码机(TEM)的完全重新设计的带状信号重建框架。由于TEM的编码部分包括获得以上已知时间间隔的带状输入的积分值,理论上是在输入上应用已知的线性操作员。然后,我们通过该操作员的伪反转来接近信号重建的一般问题。我们使用投影在数值上和迭代地执行此任务(POC)。该算法可以在离散时间内完全实现,其乘以通过释放系数的使用,乘法通过两个符号的功率降低到缩放。同时,该算法达到了与拉扎尔和Tóth相似的收敛速度。对于实时处理,我们提出了一种近似的时变的FIR实现,这避免了输入到块中的拆分。我们终于提出了数据噪声下算法的一些初步半收敛性分析。

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