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Circuit Implementation of Linguistic-Hedge Fuzzy Logic Controller in Current-Mode Approach

机译:电流模式方法中语言对冲模糊逻辑控制器的电路实现

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In this paper, a novel fuzzy logic controller called linguistic-hedge fuzzy logic controller in a mixed-signal circuit design is discussed. The linguistic-hedge fuzzy logic controller has the following advantages: 1) it needs only three simple-shape membership functions for characterizing each variable prior to the linguistic-hedge modifications; 2) it is sufficient to adopt nine rules for inference; 3) the rules are developed intuitively without heavy dependence on the endeavors of experts; 4) it performs better than conventional fuzzy logic controllers; and 5) it can be realized with a lower design complexity and a smaller hardware overhead as compared with the controllers that required more than nine rules. In this implementation, a current-mode approach is adopted in designing the signal processing portions to simplify the circuit complexity; digital circuits are adopted to implement the programmable units. This design was fabricated with a TSMC 0.35 μm single-polysilicon-quadruple-metal CMOS process. In this chip, the LHFLC processes two input variables and one output variable. Each variable is specified using three membership functions. Nine inference rules, scheduled in a rule table with a dimension of 3 × 3, define the relationship implications between these three variables. Under a supply voltage of 3.3 V, the measurement results show that the measured control surface and the control goal are consistent. The speed of inference operation goes up to 0.5M FLIPS that is fast enough for the control application of the cart-pole balance system. The cart-pole balance system experimental results show that this chip works with nine inference rules. Furthermore, by performing some off-chip modifications, such as shifting and scaling on the input signals and output signal of this design, according to the specifications defined by the controlled plants, this design is suitable for many control applications.
机译:本文讨论了一种在混合信号电路设计中称为语言对冲模糊逻辑控制器的新型模糊逻辑控制器。语言对冲模糊逻辑控制器具有以下优点:1)在对语言对冲进行修改之前,仅需要三个简单形状隶属函数即可表征每个变量; 2)采用九个推理规则就足够了; 3)规则是凭直觉制定的,而无需严重依赖专家的努力; 4)其性能优于传统的模糊逻辑控制器; 5)与需要九个以上规则的控制器相比,可以实现较低的设计复杂度和较小的硬件开销。在该实施方式中,在设计信号处理部分时采用电流模式方法以简化电路复杂度。采用数字电路来实现可编程单元。该设计是使用TSMC 0.35μm单多晶硅四金属CMOS工艺制造的。在该芯片中,LHFLC处理两个输入变量和一个输出变量。每个变量都使用三个隶属函数指定。安排在规则表中的9个推理规则的尺寸为3×3,定义了这三个变量之间的关系。在3.3 V的电源电压下,测量结果表明,被测控制表面和控制目标是一致的。推论运算的速度达到了0.5M FLIPS,这对于车杆平衡系统的控制应用而言足够快。车杆平衡系统的实验结果表明,该芯片具有九种推理规则。此外,根据受控设备定义的规范,通过对本设计的输入信号和输出信号进行一些片外修改,例如对输入信号和输出信号进行移位和缩放,该设计适用于许多控制应用。

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