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A_Brushless_DC_Motor_Speed_Control_System_Using_Fu
- 应用模糊逻辑对直流电机转速进行控制-using the fuzzy logic to control the vitess of the motor
A_real-time_adaptive_PID_controller_step_motor
- 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
DC-motor-speed-PID-Control
- 为了改善无刷直流电机的调速性能 ,针对普通模糊 P ID速度控制器的缺陷 ,研究了基于变论域思想的自适应模糊 P ID控制器及其在 BLDCM控制系统中的应用。-To improve the performance of brushless DC motor speed, the speed for ordinary fuzzy P ID controller defect of thought based on variable universe adaptive fuzzy P ID con
the-Captured-Wind-Energy-in-a
- 本文提出了一种应用模糊控制器 为提高捕获风能和表现 变速风力发电应用模糊控制器 -This paper presents an application of fuzzy controllers for improving the captured wind energy and the performance of variable speed wind turbines using fuzzy controllers
a-Variable-Speed-Variable-Pitch
- 能量捕获 应用fuzzy-logic控制是由控制器 直接在涡轮pitch-angle和速度控制 是由一位矢量fuzzy-logic控制器吗 -the energy capture control is made applying a fuzzy-logic controller directly on the turbine pitch-angle and the speed control is made by a field-oriented fuzzy-logi
fuzzy-control-
- 基于LM3S8962ARM的模糊控制直流调速系统-Based on LM3S8962ARM fuzzy control of DC speed control system
Fuzzy-adaptive-control-of-PMSM
- 该控制器输出部分的比例因子可以根据转矩的变化趋势经自适应机构的模糊规则库在线调整,不仅可以使永磁同步电机直接转矩控制系统保持恒定的开关频率,而且可以有效地减小磁链和转矩脉动,特别是低速时的转矩脉动。仿真验证了自适应模糊永磁同步电机直接转矩控制策略的有效性。 -The output of the controller part of the scale factor by the adaptive mechanism of the fuzzy rules according to the to
Papiernik---Fuzzy-logic-speed-control-of-an-induc
- induction motor modelling for electrical
DC_motor_control_fuzzy
- fuzzy logic control of speed DC Motor-fuzzy logic control of speed DC Motor
A-hybrid
- 针对传统的BP或GA对模糊神经网络的识别应用存在收敛容易陷入局部极小 识别率低下等问题 提出一 种基于BFGS的混合遗传算法 其基本思想为 首先构造一种前馈型模糊神经网络结构 然后用遗传算法进化若干代 后 当目标函数的梯度或者范数小于预先设定值 则改用BFGS算法进行优化识别 仿真实验表明 对比GA该算法 收敛速度较快 识别精度提高了约7% 能够较好地应用于一类模糊神经网络的识别-In traditional BP or GA to identify the application
2005_FUZZY05(EmbeddedType2FLC)
- Marine and Traction propulsion systems operate in highly dynamic and uncertain control environments. The current speed controllers for marine/traction propulsion systems are based on PID and type-1 Fuzzy Logic Controllers (FLCs) which ca
2412ijics03
- SPEED CONTROL OF SEPARATELY EXCITED DC MOTOR USING FUZZY NEURAL MODEL REFERENCE CONTROLLER
2221
- Development of a Self-Tuning TSK-Fuzzy Speed Control Strategy for Switched Reluctance Motor
simulation
- SPACE VECTOR MODULATION & FUZZY PID SPEED CONTROLLER FOR DIRECT TORQUE CONTROL INDUCTION MOTOR DRIVE
DC_motor_control_fuzzy
- DC motor speed control using fuzzy logic
DFIG-CONTROL-BASED-ON-FLC
- 基于模糊控制的变速恒频风力发电最大风能跟踪研究-The maximum follow-up study of wind speed constant frequency wind power generation based on fuzzy control
mohu
- 永磁同步电机模糊控制,包括模糊弱磁模糊无速度传感器控制-Permanent magnet synchronous motor control, including fuzzy weak magnetic speed sensorless control
06341870
- Abstract—This paper proposes a new strategy to meet the controllable heating, ventilation, and air conditioning (HVAC) load with a hybrid-renewable generation and energy storage system. Historical hourly wind speed, solar irradiance, and load d
Fuzzy-Logic-Based-Speed-and-Current-Control-of.ra
- Fuzzy Logic Based Speed and Current Control of Vector Controlled PMSM Drive
Fuzzy
- Speed Control of Induction Motor using Fuzzy Rule Base