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Synthesis of operational transconductance amplifier-based analog fuzzy functional blocks and its application

机译:基于运算跨导放大器的模拟模糊功能块的综合及其应用

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摘要

A synthesis of analog fuzzy functional blocks (a complementary membership function circuit, a maximum circuit, a complementary maximum circuit, and a defuzzifier circuit) based on operational transconductance amplifiers (OTA's) is presented. The complementary membership function circuit and the maximum circuit are synthesized from the formulations using bounded-difference operations. The defuzzifier circuit is synthesized as the follower-aggregation circuit composed of multiplier-type OTA's, SPICE simulations showed that the proposed fuzzy functional blocks feature high-speed operations and low power consumption. The complementary membership function circuit, the maximum circuit, and the complementary maximum circuit were built with discrete components and commercially available OTA's, and the performances of these circuits were confirmed by experiments. As an application, a singleton fuzzy controller with 3/spl times/3 rules is synthesized using the proposed circuits. The simulation of this controller showed that the inference speed of the order of 15 MRPS (rules per second) is easily realizable.
机译:提出了基于运算跨导放大器(OTA)的模拟模糊功能块(互补隶属函数电路,最大电路,互补最大电路和去模糊器电路)的综合。互补隶属函数电路和最大电路使用有界差分运算由公式合成。将去模糊器电路合成为由乘法器型OTA组成的跟随器聚合电路,SPICE仿真表明所提出的模糊功能块具有高速运算和低功耗的特点。互补隶属函数电路,最大电路和最大互补电路均由分立元件和市售的OTA组成,这些电路的性能已通过实验确定。作为应用,使用提出的电路综合了具有3 / spl次/ 3规则的单例模糊控制器。该控制器的仿真表明,可以轻松实现15 MRPS(规则每秒)量级的推理速度。

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