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A Fully Programmable Analog CMOS Rational-Powered Membership Function Generator with Continuously Adjustable High Precision Parameters

机译:具有连续可调高精度参数的完全可编程模拟CMOS有理功率隶属函数发生器

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摘要

This paper presents a novel structure for implementing rational-powered membership functions (RPMFs), which are the extended forms of triangular/trapezoidal membership functions and those functions which are generated by applying linguistic hedges. The hardware realization of an RPMF consists of a triangular membership function generator circuit followed by a rational-powered generator module (RPGM). A novel fully programmable compact triangular/trapezoidal/s-shaped/z-shaped membership function generator with the ability to continuously change parameters is presented which is compatible with the proposed RPGM. A new method is introduced to implement the RPGM based on the approximation of the function "x~a" by the functions square and square-rooter which are simply implemented in a current-mode analog approach based on the translinear principle, which leads to a design that is simple, and has high accuracy and less hardware usage, with a resulting lower chip area and lower power consumption. The designed circuit was simulated by an HSPICE simulator with level 49 parameters (BSIM3v3), and the simulation results show that the maximum power consumption of the RPGM is 800 μW, while the maximum RMS error is 1.25 %. Finally, layouts of the circuits prepared using Cadence software are presented.
机译:本文提出了一种用于实现有理数幂隶属函数(RPMF)的新颖结构,该函数是三角形/梯形隶属函数的扩展形式,以及通过应用语言树篱生成的那些函数。 RPMF的硬件实现包括一个三角形隶属函数生成器电路,后跟一个有理功率生成器模块(RPGM)。提出了一种新颖的完全可编程的紧凑的三角形/梯形/ s形/ z形隶属函数发生器,具有连续改变参数的能力,与提出的RPGM兼容。引入了一种新方法来实现RPGM,该函数基于函数square和square-rooter近似函数“ x〜a”,而这些函数可以简单地基于基于跨线性原理的电流模式模拟方法来实现,从而导致设计简单,精度高,硬件使用量少,从而减小了芯片面积并降低了功耗。该设计电路由具有49级参数(BSIM3v3)的HSPICE仿真器进行仿真,仿真结果表明RPGM的最大功耗为800μW,而最大RMS误差为1.25%。最后,介绍了使用Cadence软件准备的电路布局。

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