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Design of digital filters for low power applications by reducing the Hamming distance of the filter coefficients using mean field annealing algorithm

机译:使用平均场退火算法减少滤波器系数的汉明距离的低功耗应用的数字滤波器设计

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In hardware applications, digital filters can be realized by an integrated circuit design or can be implemented by coding of digital signal processors. They require continuous arithmetic calculations and dissipate high power and occupy a large number of hardware resources. Therefore, the design of digital filters considering hardware requirements is important for some hardware critical applications, but there is no clear method for it. Mean field annealing (MFA) is an efficient and deterministic method which can be applied to filter design algorithms. It is computationally less complex when compared to other methods, such as simulated annealing and genetic algorithms, as they are also efficient in such optimization processes where the search space is broad. This work tries to minimize the Hamming distance between successive filter coefficients. The power dissipation of a DSP is reduced when the Hamming distance is minimized, since it reduces the switching activity of the processor. The results show that the Hamming distance between the filter coefficients is reduced by about 60-70% when the mean field annealing method is employed. The next step is to simulate the power dissipation in a specific DSP architecture for the verification of the power minimization.
机译:在硬件应用中,可以通过集成电路设计实现数字滤波器,或者可以通过数字信号处理器的编码来实现。它们需要连续的算术计算并耗散高功率并占据大量硬件资源。因此,考虑硬件要求的数字滤波器的设计对于某些硬件关键应用是重要的,但没有明确的方法。平均场退火(MFA)是一种有效且确定性的方法,可以应用于过滤设计算法。与其他方法相比,它是计算不那么复杂的,例如模拟退火和遗传算法,因为它们在搜索空间广泛的这种优化过程中也是有效的。这项工作试图最小化连续滤波器系数之间的汉明距离。当汉明距离最小化时,DSP的功耗减小,因为它降低了处理器的切换活动。结果表明,当采用平均场退火方法时,滤波器系数之间的汉明距离减小了约60-70%。下一步是模拟特定DSP架构中的功耗,以便验证电源最小化。

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