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A modular and scalable architecture for the realization of high-speed programmable rank-order filters using threshold logic

机译:模块化和可扩展的体系结构,用于使用阈值逻辑实现高速可编程秩阶滤波器

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摘要

We present a new scalable architecture for the realization of fully programmable rank order filters (ROF). Capacitive Threshold Logic (CTL) gates are utilized for the implementation of the multi-input programmable majority (voting) functions required in the architecture. The CTL-based realization of the majority gates used in the ROF architecture allows the filter rank as well as the window size to be user-programmable, using a much smaller silicon area, compared to conventional realizations of digital median filters. The proposed filter architecture is completely modular and scalable, and the circuit complexity grows only linearly with maximum window size (m) and with word length (n). A prototype of the proposed filter circuit has been designed and fabricated using double-polysilicon 0.8 μm CMOS technology. Detailed post-layout simulations and test results of the ROF prototype circuit indicate that the new architecture can accommodate sampling clock rates of up to 50 MHz, corresponding to an effective data processing rate of 800 Mb/s for a very large filter with window size 63 and word length of 16 bits.
机译:我们提出了一种新的可扩展架构,用于实现完全可编程的秩序滤波器(ROF)。电容阈值逻辑(CTL)门用于实现体系结构中所需的多输入可编程多数(表决)功能。与数字中值滤波器的传统实现方式相比,ROF体系结构中使用的多数门的基于CTL的实现方式允许滤波器等级和窗口大小由用户可编程,使用的硅面积要小得多。所提出的滤波器架构是完全模块化和可扩展的,并且电路复杂度仅随着最大窗口大小(m)和字长(n)线性增加。使用双多晶硅0.8μmCMOS技术设计并制造了所提出的滤波器电路的原型。 ROF原型电路的详细布局后仿真和测试结果表明,新架构可适应高达50 MHz的采样时钟速率,对于窗口大小为63的超大型滤波器,对应的有效数据处理速率为800 Mb / s字长为16位。

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