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[SourceCode电机pid的vhdl代码

Description: 《直流步进电机控制器实例(VHDL源代码)
Platform: | Size: 4281 | Author: supzct | Hits:

[Algorithmpid算法

Description: 简单明了的PID控制算法,可以参考一下-simple PID control algorithm, a reference
Platform: | Size: 1024 | Author: 宋向东 | Hits:

[ARM-PowerPC-ColdFire-MIPSpid.c

Description: pid算法c语言源码 仅供参考 pid算法c语言源码 仅供参考-pid algorithm c language source code for reference purposes only pid algorithm c language source code for reference only
Platform: | Size: 8192 | Author: npvt | Hits:

[OtherPIDcontrolbook2

Description: PID CONTROLLER HELPING BOOK
Platform: | Size: 667648 | Author: koolslash | Hits:

[VHDL-FPGA-Verilogtec_control_pgfa

Description: 使用fpga基于积分分离的pid算法进行温控的程序,经实验证明很稳定-Fpga points based on the use of separate pid process temperature control algorithm, the experiment proved to be stable
Platform: | Size: 3072 | Author: shengtao | Hits:

[SCMshukongzhiliudianyuan

Description: 介绍了一种闭环智能数控直流电流源的设计原理和实施方案,该方案采用自行设计制作的高精度电压源,利用单片机、PWM和运算放大器构成A/DD/A转换器来控制场效应管导通状态的原理,达到了输出恒流的目的。整个系统采用89C58单片机作为主控部件,将预置电流值数据送入D/A转换器,经硬件电路变换为恒定的直流输出,同时使用采样电阻将实际输出电流转换成电压送入A/D转换器,并将其反馈到单片机中构成闭环系统,进而实现预设值和实际值的比较,再通过调整D /A转换器输出的电压来改变场效应管的导通状态,减小了实际值与预设值之间的误差,实现了电流可预置、可步进调整、输出的电流信号可直接数字显示的功能。采用硬件闭环、软件闭环、软件实时积分、实时滤波的方法,锁定输出电流,从而实现了高精度恒流源的目的。此次所设计的电流源具有精度高、结构简单、工作稳定、操作方便、成本低廉、带负载能力强等优点-The scheme adapts high precision voltage source designed by ourselves Micro Control Unit (MCU) D/A converter and amplifier to control the transmitting state of field effect transistor which attains constant current. The system adapts MCU 89c52 as main control part the output current is transformed into the voltage by sample resistant and the voltage is sent to D/A converter and then sent to the MCU compared with the setting current. If there exist errors we should adapt D/A converter output and change the transmitting state of field effect transistor. The actual value is directed to the setting value. The direct current reaches the constant value. The closed loop control and PID arithmetic is used to realize high precision and wide range in the software design part. The intelligent current source realizes that the output current can be preset adjusted step by step and displayed in digit directly. Above functions are operated by keyboard within the current source. The stability of this
Platform: | Size: 2048 | Author: zhendongzhao | Hits:

[VHDL-FPGA-Verilogfuzzy_inanalyser

Description: VHDL模糊PID控制控制器模糊化程序。-Fuzzy PID control of VHDL programming fuzzy controller.
Platform: | Size: 1024 | Author: Huanggeng | Hits:

[Embeded-SCM DevelopPID

Description: 本文运用硬件描述语言vhdl所写的PID算法的硬件实现在FPGA/CPLD-In this paper, the use of hardware description language written in vhdl hardware PID algorithm in FPGA/CPLD
Platform: | Size: 3072 | Author: 留心 | Hits:

[VHDL-FPGA-Verilogpid_vhdl_code

Description: PID controller... ... ... ... ... ... ... ... ..... -PID controller.....................................................
Platform: | Size: 71680 | Author: kiran | Hits:

[SCMcontroller

Description: PID controller .....source code-PID controller .....source code..................
Platform: | Size: 1024 | Author: kiran | Hits:

[VHDL-FPGA-VerilogVHDLAMSandMAST

Description: a useful document for VHDL-AMS and MAST languages
Platform: | Size: 1773568 | Author: Evren Akdag | Hits:

[Software EngineeringFPGA-Based_PID_Controller_Implementation

Description: this paper describes implementation of PID controller on FPGA platform using VHDL.
Platform: | Size: 734208 | Author: amar | Hits:

[VHDL-FPGA-VerilogFPGA-based_PID_controller_for_achieving.ZIP

Description: 基于FPGA实现PID控制器的研究 介绍了一种基于 FPGA 的用数字电路实现的 PID控制器。把原来用单片机实现的数字 PID 控制算法单独用数字电路来实现,保留单片机对参数整定的灵活性。在设计中研究了 PID 算法的数字电路实现。由于把 PID 控制从单片机中隔离出来,因此可以降低在工控场合强烈的干扰造成单片机程序跑飞对整个系统的影响,提高了控制的可靠性。最后介绍了本设计在逃逸链梯中的应用。-FPGA-based PID controller for achieving
Platform: | Size: 175104 | Author: JIPU_PHIL | Hits:

[Otherpid

Description: This includes a PID Controller and a PWN Generator for implementation on an FPGA using VHDL
Platform: | Size: 1024 | Author: sridhar | Hits:

[Mathimatics-Numerical algorithmsPID(VHDL)

Description: PID如何通过VHDL语言来实现,前来看看那这个文件吧-PID
Platform: | Size: 3072 | Author: wjz | Hits:

[Software EngineeringA_real-time_adaptive_PID_controller_step_motor

Description: 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 PID controller is often difficult to meet the multi-variable, nonlinear, strong coupling dynamics of stepping motor response and accurate speed control, combining the traditional PID control and fuzzy control and genetic algorithm (GA) 整 PID parameters set the advantages of the design based on fuzzy Adaptive genetic algorithm in PID controller, stepper motor, give full play to traditional and intelligent control their own advantages. Simulation results show that the real-time adaptive PID controller, stepper motor, has good adaptive ability and resistance to load disturbances. The stability of the dynamic speed response is superior to the traditional aspects of PID controller and fuzzy controller, the system reached a high speed performance and control precision.
Platform: | Size: 466944 | Author: 孙文 | Hits:

[VHDL-FPGA-VerilogPIDVHDL

Description: 利用vhdl语言实现的pid控制代码,可以应用于需要硬件实现的底层控制中,比如电机控制-Using vhdl language of the pid control code can be applied to the underlying need to control hardware, such as motor control
Platform: | Size: 3072 | Author: 刘业超 | Hits:

[VHDL-FPGA-Verilogpid_controler_latest.tar

Description: PID控制器的verilog实现,做闭环控制器的人可以参考-PID controller verilog implementation of closed-loop controller may make reference to
Platform: | Size: 3072 | Author: | Hits:

[VHDL-FPGA-VerilogPID

Description: 用VHDL语言来实现PID算法,文件包含了仿真的所有结果-VHDL language used to implement PID algorithm, the file contains all the simulation results. . .
Platform: | Size: 1076224 | Author: 陈小林 | Hits:

[VHDL-FPGA-VerilogPID

Description: 流量控制 正文 PID算法的自动控制 fpga-Flow control body of the PID algorithm for the automatic control
Platform: | Size: 437248 | Author: 贺宗攀 | Hits:
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