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Performance Evaluation of Fuzzy Switching Position Controller for Automation and Process Industry Control

机译:自动化和过程工业控制的模糊开关位置控制器的性能评估

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摘要

This paper presents the development and implementation of a new and practical fuzzy switching position controller for process industry control. Compatible with the structure of a bang–bang controller, a two-input fuzzy switching position controller with five rules is proposed. The idea is based on constructing a fuzzy switching control law which is functionally analogous to a traditional bang–bang controller. Fuzzy logic rules are used to enable an improved version of the conventional bang–bang control. The objective is to replace the conventional bang–bang controller with the proposed fuzzy switching position controller. A modified three-stage bang–bang controller is also designed and implemented. This controller is tested under the same conditions as that of the proposed fuzzy switching position controller, and its performance is used as a basis of comparison by which both controllers are measured. Both controllers are implemented in real time, using the position control of a brushless dc motor drive found in the majority of these new robotic devices. A test bed was built and tested in the laboratory using a collection of tools that include both off-the-shelf hardware (dSPACE DSP DS1104) and software (MATLAB/Simulink). Experimental results show that the fuzzy switching position controller produces adequate control performance, particularly in handling nonlinearities and external disturbances. The efficacy of the fuzzy switching position controller is demonstrated by its positive results, practicality, and feasibility in the process industry sector, when compared with a modified traditional bang–bang controller.
机译:本文介绍了用于过程工业控制的新型实用模糊开关位置控制器的开发和实现。为了与爆炸控制器的结构兼容,提出了具有五个规则的两输入模糊开关位置控制器。这个想法是基于构造模糊开关控制定律的,该定律在功能上类似于传统的爆炸控制器。模糊逻辑规则用于实现常规爆炸控制的改进版本。目的是用提出的模糊开关位置控制器代替传统的爆炸控制器。还设计和实现了一种改进的三级bang-bang控制器。在与所提出的模糊开关位置控制器相同的条件下对该控制器进行了测试,并且将其性能用作比较的基础,以此来测量两个控制器。这两个控制器都是使用大多数新型机器人设备中的无刷直流电动机驱动器的位置控制实时实现的。使用包括现成硬件(dSPACE DSP DS1104)和软件(MATLAB / Simulink)在内的一系列工具在实验室中构建并测试了测试床。实验结果表明,模糊开关位置控制器具有足够的控制性能,特别是在处理非线性和外部干扰方面。与改进的传统爆炸控制器相比,模糊开关位置控制器的有效性,过程实用性和可行性证明了模糊开关位置控制器的有效性。

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