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A Self-Tuning zSlices-Based General Type-2 Fuzzy PI Controller

机译:基于zSlices的自调整通用2型模糊PI控制器

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摘要

© 1993-2012 IEEE. The interval type-2 fuzzy Proportional-Integral (PI) controller (IT2-FPI) might be able to handle high levels of uncertainties to produce a satisfactory control performance, which could be potentially due to the robust performance as a result of the smoother control surface around the steady state. However, the transient state and disturbance rejection performance of the IT2-FPI may degrade in comparison with the type-1 fuzzy PI (T1-FPI) counterpart. This drawback can be resolved via general type-2 fuzzy PI controllers which can provide a tradeoff between the robust control performance of the IT2-FPI and the acceptable transient and disturbance rejection performance of the type-1 PI controllers. In this paper, we will present a zSlices-based general type-2 fuzzy PI controller (zT2-FPI), where the secondary membership functions (SMFs) of the antecedent general type-2 fuzzy sets are adjusted in an online manner. We will examine the effect of the SMF on the closed-system control performance to investigate their induced performance improvements. This paper will focus on the case followed in conventional or self-tuning fuzzy controller design strategies, where the aim is to decrease the integral action sufficiently around the steady state to have robust system performance against noises and parameter variations. The zSlices approach will give the opportunity to construct the zT2-FPI controller as a collection of IT2-FPI and T1-FPI controllers. We will present a new way to design a zT2-FPI controller based on a single tuning parameter where the features of T1-FPI (speed) and IT2-FPI (robustness) are combined without increasing the computational complexity much when compared with the IT2-FPI structure. This will allow the proposed zT2-FPI controller to achieve the desired transient state response and provide an efficient disturbance rejection and robust control performance. We will present several simulation studies on benchmark systems, in addition to real-world experiments that were performed using the PIONEER 3-DX mobile robot that will act as a platform to evaluate the proposed systems. The results will show that the control performance of the self-tuning zT2-FPI control structure enhances both the transient state and disturbance rejection performances when compared with the type-1 and IT2-FPI counterparts. In addition, the self-tuning zT2-FPI is more robust to disturbances, noise, and uncertainties when compared with the type-1 and interval type-2 fuzzy counterparts.
机译:©1993-2012 IEEE。区间2型模糊比例积分(PI)控制器(IT2-FPI)可能能够处理高水平的不确定性,以产生令人满意的控制性能,这可能是由于控制更加平稳所带来的强劲性能稳定状态周围的表面。但是,与1型模糊PI(T1-FPI)相比,IT2-FPI的瞬态和抗干扰性能可能会下降。可以通过通用的2型模糊PI控制器解决此缺陷,该控制器可以在IT2-FPI的鲁棒控制性能与1型PI控制器可接受的瞬态和干扰抑制性能之间进行权衡。在本文中,我们将介绍一种基于zSlices的通用2型模糊PI控制器(zT2-FPI),其中在线通用2型模糊集的次级隶属函数(SMF)可以在线调整。我们将研究SMF对封闭系统控制性能的影响,以研究其引起的性能改进。本文将重点关注常规或自调整模糊控制器设计策略中的情况,其目的是充分减少稳态附近的积分作用,以具有针对噪声和参数变化的鲁棒系统性能。 zSlices方法将有机会将zT2-FPI控制器构造为IT2-FPI和T1-FPI控制器的集合。我们将提出一种基于单个调整参数设计zT2-FPI控制器的新方法,该方法将T1-FPI(速度)和IT2-FPI(鲁棒性)的特征结合在一起,而与IT2- FPI结构。这将使所提出的zT2-FPI控制器能够实现所需的瞬态响应,并提供有效的干扰抑制和鲁棒的控制性能。除了使用PIONEER 3-DX移动机器人进行的实际实验之外,我们还将提供一些基准系统的仿真研究,这些实验将用作评估所建议系统的平台。结果表明,与1型和IT2-FPI同类产品相比,自整定zT2-FPI控制结构的控制性能增强了瞬态和抗扰性能。此外,与类型1和间隔类型2模糊对应物相比,自整定zT2-FPI在干扰,噪声和不确定性方面更具鲁棒性。

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    Kumbasar, T; Hagras, H;

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  • 年度 2015
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