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首页> 外文期刊>Measurement and Control: Journal of the Institute of Measurement and Control >A spintronic memristor crossbar array for fuzzy control with application in the water valves control system
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A spintronic memristor crossbar array for fuzzy control with application in the water valves control system

机译:用于水阀控制系统中的模糊控制的旋转式映射器横杆阵列

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摘要

Fuzzy control, an intelligent control method, is generally employed to deal with complex nonlinear controlled objects that cannot be expressed by accurate mathematical model. Memristor, whose unique advantages are automatic successive memory and nonvolatility, brought new opportunity for solving the key question of fuzzy control. With the design idea of software harden, this paper first constructed membership function in the fuzzy controller based on the unique feature of crossbar array of the spintronic memristor and elaborated the whole construction process. After that, this paper simulated the construction process with MATLAB simulation software, verifying its reasonability and feasibility. Furthermore, a typical fuzzy control water tank system was chosen to explore and discuss the flexibility of spintronic memristor crossbar array in the real-time control system, and the proposed control strategy and the typical fuzzy control strategy were compared. The results revealed that the proposed control strategy was able to attain the effectiveness of the typical fuzzy control system in the real-time control system. This sets light to future research on the implementation of memristor crossbar array in the real-time control system and also promotes the application of fuzzy controller design idea. The problems needed to be solved when implementing memristor crossbar array in the real-time control system were discussed in the final section.
机译:模糊控制,一种智能控制方法,通常用于处理不能通过准确的数学模型表示的复杂的非线性控制对象。 Memristor,其独特的优势是自动的连续内存和非挥发性,为解决模糊控制的关键问题带来了新的机会。随着软件硬化的设计思想,本文基于Spintronic Memitristor横杆阵列的独特特征,首先构建了模糊控制器的隶属函数,并阐述了整个施工过程。此后,本文模拟了MATLAB仿真软件的施工过程,验证了其合理性和可行性。此外,选择典型的模糊控制水箱系统来探索和讨论实时控制系统中的旋转反映函数横梁阵列的灵活性,以及​​所提出的控制策略和典型的模糊控制策略。结果表明,建议的控制策略能够实现典型的模糊控制系统在实时控制系统中的有效性。这使光到未来研究实时控制系统中的Memristor CrossBar阵列的实施,并促进了模糊控制器设计理念的应用。在最后一节中讨论了在实时控制系统中实现存储器横杆阵列时所需的问题。

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