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A Current-mode, First-order Takagi-sugeno-kang Fuzzy Logic Controller, Supporting Rational-powered Membership Functions

机译:电流模式一阶高木-sugeno-kang模糊逻辑控制器,支持有理性的隶属函数

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摘要

This paper presents a new Fuzzy Logic Controller (FLC) having the ability to support rational-powered membership functions. These functions are extended forms of triangular/trapezoidal membership functions, and also those functions which are generated by applying linguistic hedges. A two-input, single-output, nine-rule Takagi-Sugeno-Kang (TSK) type FLC is designed in 0.35μm standard CMOS technology. This controller can also be used as a standard (Mamdani) type FLC having singleton output membership functions, as well as a Linguistic Hedge FLC (LHFLC). Mixed analog/digital realization of the circuit makes the design programmable and extendable, while having relatively low power consumption. Current mode realization of the circuits leads to simple and intuitive configurations. For a particular set of programming parameters, simulation results of the controller using HSPICE simulator and level 49 parameters (BSIM3v3), show an average power consumption of 5 mW, and an RMS error of 1.32% compared to ideal results obtained from MATLAB software.
机译:本文提出了一种新的模糊逻辑控制器(FLC),它能够支持有理数的隶属函数。这些函数是三角形/梯形隶属函数的扩展形式,也是通过应用语言树篱生成的那些函数。两输入,单输出,九规则的Takagi-Sugeno-Kang(TSK)型FLC采用0.35μm标准CMOS技术设计。该控制器还可以用作具有单例输出隶属函数的标准(Mamdani)型FLC,以及语言对冲FLC(LHFLC)。电路的混合模拟/数字实现使设计可编程和可扩展,同时具有相对较低的功耗。电路的电流模式实现导致简单直观的配置。对于一组特定的编程参数,与使用MATLAB软件获得的理想结果相比,使用HSPICE模拟器和49级参数(BSIM3v3)进行的控制器仿真结果显示平均功耗为5 mW,RMS误差为1.32%。

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