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The cable compensation system is an experiment system that performs simulations of partial or microgravity environments on earth. It is a highly nonlinear and complex system.In this paper, a network based on the theory of the Fuzzy Cerebellum Model A
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摘要:由于步进电动机调速系统具有非线性等特点,使得利用简单模糊控制与传统PID控制精度不高,因此文中提出利用模
糊PID控制器实现对步进电动机调速系统进行控制的方法,并设计了模糊PID控制器。文中首先建立了步进电动机的数学
模型,并根据数学模型推导了其传递函数 然后介绍了模糊PID控制器结构,以及模糊控制规则的生成方法,并且对该控制
方案进行数字仿真。仿真结果表明:该方法调节精度较高,动态响应快,无超调,有一定的可行性。
-Abstract: As the stepper mot
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传统PID控制器通常难以满足多变量、非线性、强耦合的步进电机动态响应和精
确调速要求,结合传统PID控制和模糊控制及遗传算法(GA)整定PID参数的优点,设计基于
模糊遗传算法的实时自适应步进电动机PID控制器,充分发挥传统和智能控制策略各自的优
势。仿真结果表明,该实时自适应步进电动机PID控制器,具有很好的自适应能力和抗负载扰
动能力。在稳定性、动态速度响应诸方面均优于传统的PID控制器和模糊控制器,系统达到了
较高调速性能和控制精度。
-Traditional PI
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in this work we have tried to control a tanker ship using fuzzy logic and fuzzy controllers.
it s well known that we can use fuzzy logic for control purposes in two ways,first we can use fuzzy logic to make a model of the plant and use conventio
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具有非线性输入的SISO非线性时变时滞系统的自适应模糊控制仿真程序-Adaptive Fuzzy Control of SISO Nonlinear Time-Varying
Delay System with Nonlinear Input
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模糊PID控制器具有控制任意非线性函数的能力,能实现对PID控制器的参数Kp, Ki, Kd的实时在线整定,使系统具有更好的鲁棒性和自适应性,其输出也可以通过在线调整达到预期的控制精度。-Fuzzy PID controller has the ability to control an arbitrary nonlinear function, can achieve the parameters of the PID controller Kp, Ki, Kd,
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:针对能够采用仿射非线性表示的含有未建模动态的SISO非线性系统,讨论了一种基于神经网络的自适应
控制方法.该方法对受控对象的已知部分.采用反馈线性化方法设计控制器,用神经网络在线补偿未建模动态及
外部干扰等引起的误差,从而实现自适应控制。对具有未建模动态的双车倒立摆设计了输出反馈自适应控制系
统.仿真表明该方法是有效的。 -A discussion is devoted to design neural network adaptive control scheme of t
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详细介绍了MATLAB与控制工程相关的6个基础工具箱:系统辨识工具箱、控
制系统工具箱、鲁棒控制工具箱、模型预测控制工具箱、模糊逻辑工具箱和非线性控制设计模块。同时提供了MATLAB的一些基础知识。-Details related to MATLAB and Control Engineering of the six basic kit: System Identification Toolbox, Control System Toolbox, Robust Control Toolbo
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模糊控制,希望对大家有用啊,适合初学者,控制理论与控制工程-The current status of automation technology in wastewater treatment industry is analyzed. The successful application of fuzzy control technology in wastewater treatment is introduced. As complex and uncertainty it is dif
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本人从修改的模糊控制代码,经过自己修改后可在vc6.0,运行!输入e表示输出误差,ec表示误差变化率,经过测试具有很好的控制效果,对于非线性系统和数学模型难以建立的系统来说有更好的控制效果!-Himself from the modified fuzzy control code, after their own modified in vc6.0, run! Enter e said output error, ec the error rate of change, has tested t
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This paper presents two kinds of adaptive control schemes for robot manipulator which has the parametric uncertainties. In order to compensate these uncertainties, we use the FLS (fuzzy logic system) that has the capability to approximate any nonline
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Abstract-This paper proposes an adaptive robust fuzzy controller for the tracking problem of a class of uncertain nonlinear MIMO systems. The control signal is comprised of two parts. One part is an adaptive fuzzy controller which approximates the sy
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以下本人从修改的模糊控制代码,经过自己修改后可在vc6.0,运行!输入e表示输出误差,ec表示误差变化率,经过测试具有很好的控制效果,对于非线性系统和数学模型难以建立的系统来说有更好的控制效果!-I have the following code from a modified fuzzy control, through their modifications in vc6.0, run! Enter e represents the output error, ec represents t
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Abstract—Owing to load variation and unmodeled dynamics, a robot
manipulator can be classified as a nonlinear dynamic system with structured
and unstructured uncertainties. In this paper, the stability and
robustness of a class of the fuzzy log
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Power electronics plays an important role in controlling
the grid-connected renewable energy sources. This paper
presents a novel adaptive neuro-fuzzy control approach for
the renewable interfacing inverter. The main objective is to
achieve s
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adaptive controller- adaptive controller
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利用MATLAB,实现一个非线性系统模糊控制与经典PID控制的比较。-Use MATLAB, nonlinear system to achieve more of a classic fuzzy control and PID control.
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倒立摆控制系统是一个复杂的、不稳定的、非线性系统,是进行控制理论教学及开展各种控制实验的理想实验平台。对倒立摆系统的研究能有效的反映控制中的许多典型问题:如非线性问题、鲁棒性问题、镇定问题、随动问题以及跟踪问题等。通过对倒立摆的控制,用来检验新的控制方法是否有较强的处理非线性和不稳定性问题的能力。利用模糊控制对倒立摆进行控制-Inverted pendulum control system is a complex, unstable, nonlinear system, which is an
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type-2 fuzzy controllers (T2FLC) are designed to control position of yaw and pitch angles of the Twin Rotor Multi-input Multi-output System (TRMS) characterized with nonlinear dynamics and uncertainties
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