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Area/Energy-Efficient Gammatone Filters Based on Stochastic Computation

机译:基于随机计算的面积/节能伽马通滤波器

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摘要

This paper introduces area/energy-efficient gammatone filters based on stochastic computation. The gammatone filter well expresses the performance of human auditory peripheral mechanism and has a potential of improving advanced speech communications systems, especially hearing assisting devices and noise robust speech-recognition systems. Using stochastic computation, a power-and-area hungry multiplier used in a digital filter is replaced by a simple logic gate, leading to area-efficient hardware. However, a straightforward implementation of the stochastic gammatone filter suffers from significantly low accuracy in computation, which results in a low dynamic range (a ratio of the maximum to minimum magnitude) due to a small value of a filter gain. To improve the computation accuracy, gain-balancing techniques are presented that represent the original gain as the product of multiple larger gains introduced at the second-order sections. In addition, dynamic scaling techniques are proposed that scales up small values only on stochastic domain in order to reduce the number of stochastic bits required while maintaining the computation accuracy. For performance comparisons, the proposed stochastic gammatone filters are designed and evaluated on taiwan semiconductor manufacturing company (TSMC) 65-nm CMOS technology. As a result, the proposed filter achieves an area reduction of 90.7% and an energy reduction of 91.8% in comparison with a fixed-point gammatone filter at the same sampling frequency and a comparable dynamic range.
机译:本文介绍了基于随机计算的面积/高能效γ滤波器。伽马通滤波器很好地表达了人类听觉外围机制的性能,并具有改进高级语音通信系统(尤其是助听设备和抗噪声语音识别系统)的潜力。使用随机计算,数字滤波器中使用的功耗和面积饥饿乘法器被简单的逻辑门代替,从而实现了面积高效的硬件。然而,随机伽马通滤波器的直接实现方式在计算上具有明显低的精度,这由于滤波器增益的值小而导致动态范围低(最大幅度与最小幅度之比)。为了提高计算精度,提出了增益平衡技术,该技术将原始增益表示为在二阶部分引入的多个较大增益的乘积。另外,提出了动态缩放技术,其仅在随机域上缩放较小的值,以便在保持计算精度的同时减少所需的随机比特数。为了进行性能比较,采用台湾半导体制造公司(TSMC)的65 nm CMOS技术设计和评估了建议的随机伽马通滤光片。结果,与在相同采样频率和可比较动态范围下的定点伽马通滤波器相比,所提出的滤波器实现了90.7%的面积减小和91.8%的能量减小。

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