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Design of high performance Pseudorandom Clock Generator for compressive sampling applications

机译:用于压缩采样应用的高性能伪随机时钟发生器的设计

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This paper presents a new design and implementation of a power-optimized Pseudorandom Clock Generator (PRCG) for compressive sampling applications. A Pseudorandom Number Generator (PRNG) is utilized to produce uniformly distributed random numbers which select pseudorandom clock frequencies provided by a matrix of non-uniform ring oscillators. The power fed to the ring oscillators is optimized via a proposed digital circuitry called Power Control Unit which is controlled by the pseudorandom sequences generated. All proposed implementations of the PRCG cells are targeted to the TSMCN65 standard library. Additionally, the characteristics of the generated PR frequencies and the performance of the applied design are analyzed. The simulation results show an average speed of 2.65ns with an average power of 89.73??W supporting frequencies from 1.24 to 7.81 GHz. Moreover, compared to previous references, the results prove up to 86.2%, 22.5% reduction in power and a decrease in die area by 79%.
机译:本文介绍了针对压缩采样应用的功率优化伪随机时钟发生器(PRCG)的新设计和实现。伪随机数发生器(PRNG)用于产生均匀分布的随机数,该随机数选择由非均匀环形振荡器矩阵提供的伪随机时钟频率。通过建议的数字电路(称为功率控制单元)对馈入环形振荡器的功率进行优化,该数字电路由生成的伪随机序列控制。所有建议的PRCG单元实现都针对TSMCN65标准库。此外,分析了所产生的PR频率的特性和所应用设计的性能。仿真结果显示平均速度为2.65ns,平均功率为89.73?W,支持频率为1.24至7.81 GHz。而且,与以前的参考文献相比,结果证明最高可达到86.2%,功率降低了22.5%,管芯面积减少了79%。

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