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Signal Processing Foundations for Time-Based Signal Representations: Neurobiological Parallels to Engineered Systems Designed for Energy Efficiency or Hardware Simplicity

机译:基于时间的信号表示的信号处理基础:与能效或硬件简化设计的工程系统的神经生物学平行

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Neurobiological systems operate at power levels that are unattainable by modern electronic systems while exhibiting broader information processing capabilities for a number of important tasks. A variety of engineered systems designed for energy efficiency or hardware simplicity use time-based signal representations, which share similar mathematical principles with those that arise naturally in biology. In general, time-based signal representations refer to embedding information into the timing, density, or duration of a predetermined, and often bipolar, waveform. In mammalian nervous systems, it is generally accepted that neurons embed information into the timing and firing density of the sudden changes in their membrane potential, or spikes. Similarly, many low-power electronic systems use signal representations that embed information in the timing, repetition frequency, or duration of simple pulse waveforms. Despite their apparent similarities, such signal representations are often studied in different contexts.
机译:神经生物学系统以现代电子系统无法达到的功率水平运行,同时对许多重要任务表现出更广泛的信息处理能力。为提高能效或简化硬件而设计的各种工程系统都使用基于时间的信号表示,这些信号表示与生物学中自然产生的原理具有相似的数学原理。通常,基于时间的信号表示是指将信息嵌入到预定的(通常是双极性的)波形的时序,密度或持续时间中。在哺乳动物的神经系统中,人们普遍认为神经元会将信息嵌入其膜电位突然变化或尖峰的时间和激发密度中。类似地,许多低功率电子系统使用信号表示,这些信号表示将信息嵌入到简单脉冲波形的定时,重复频率或持续时间中。尽管它们具有明显的相似性,但通常会在不同的背景下研究此类信号表示形式。

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