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Description: 这是一款自动控制自动水箱水量的汇编程序,用于测试水文-This is a water tank, automatic control, automatic compilation of procedures for testing hydrological
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Size: 13107 |
Author: 毛泽东 |
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Description: 这是一款自动控制自动水箱水量的汇编程序,用于测试水文-This is a water tank, automatic control, automatic compilation of procedures for testing hydrological
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Size: 13312 |
Author: 毛泽东 |
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Description: 三容水箱的模糊控制设计,连接pc2006数据卡,运用模糊控制和自适应控制水位,利用vc++编写界面。-three-tank design of fuzzy control, connectivity pc2006 data card, fuzzy control and adaptive control of the water level, using vc++ interface.
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Size: 3581952 |
Author: vicki |
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Description: 包含了DSP入门者实验箱的流水灯,键盘,LED显示等大量实验的源代码及工程文件 -Includes a DSP Starter experimental water tank lights, keyboard, LED display, such as a large number of experiments the source code and project file
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Size: 2064384 |
Author: douzi |
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Description: :针对三容水箱是较为典型的非线性、时延对象,具有很强的代表性这一特点,
通过机理建模方法建立了三容水箱的一般数学模型。分析了线性和非线性阻力板的流量特性,
并通过实验测定了阻力板流量系数。最后给出了三容水箱的线性化模型。由仿真实验可知,非线性模型的阶跃响应和实验测得的响应曲线相吻合,-: For three-tank water tank is a more typical non-linear, time-delay object, has a strong representation of this characteristic, through the mechanism of modeling methods allow the establishment of three general mathematical model of water tanks. Analysis of linear and nonlinear flow resistance characteristics of plate, and through experimental determination of the resistance plate flow coefficient. Finally, the three-linear model of water tanks. By simulation experiments, we can see that the nonlinear model of step response and the experimentally measured response curve coincide
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Size: 147456 |
Author: lucy212 |
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Description: 基于实验室装置的先进控制算法,主要是水槽液位的控制,组态软件实现-Laboratory-based devices, advanced control algorithms, mainly water tank level control, configuration software
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Size: 37888 |
Author: 皓月天 |
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Description: 堆芯补箱(CMT)是模拟反应堆系统非能动补水实验装置的一个重要组成部分.补水实验是假设当反应堆一回路压力边界上发生踊口事故时,为防止堆芯汽化,将补水箱内的水注入堆芯的过程.当开始补水时,补水箱承受恶劣的热边界条件,随着补水箱内部的水位下降,其内部的蒸汽温度和压力都随时间发生变化,这种动态变化的边界条件,使应力分析的全过程复杂化-Core fill tank (CMT) is a simulation of the reactor system, the non-dynamic replenishment experimental device is an important component. Replenishment experiment is assumed that a loop reactor pressure boundary, when the accident occurred on leap mouth, in order to prevent the core of vaporization, will fill water tank the water into the core process. When you start overtime pay, the makeup tank to withstand harsh thermal boundary conditions, with the decline in water level inside the tank fill its internal steam temperatures and pressures have changed over time, this dynamic change boundary conditions, so that the whole process stress analysis of complex
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Size: 56320 |
Author: 小柳 |
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Description: this code for measuring the water level and control the water motor in water tank
we used 8051 controller
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Size: 1024 |
Author: jaggu |
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Description: 神经PID控制在双容水箱液位控制的实验研究-Neural PID control of two-tank water level control in the experimental study
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Size: 263168 |
Author: jdlfjk |
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Description: 双容水箱水位控制系统实验报告。包括系统原理图,人机界面,程序。-Double tank water level control system test report. Including system schematics, interface, program.
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Size: 660480 |
Author: hong |
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Description: 基于RSview32的双容水箱控制系统人机界面程序。-Two-tank based RSview32 man-machine interface process control system.
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Size: 138240 |
Author: hong |
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Description: 坦克大战游戏,用C#写的,基于VS2008,增加了水,障碍物,还有登录功能。-Battle City game, written with C#, based on VS2008, an increase of water, obstacles, and login.
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Size: 786432 |
Author: 钟慧娟 |
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Description: 智能控制理论的课程设计实例,关于双容水箱的模糊控制,具有任务书和源代码。-Intelligent control theory curriculum design example, two-tank on the fuzzy control, with the mission statement and source code.
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Size: 74752 |
Author: lili |
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Description: 水箱单片机控制系统Water tank control system with single chip microcomputer-Water tank control system with single chip microcomputer
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Size: 258048 |
Author: 万飞 |
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Description: water tank level and controlling using pic16f877A -water tank level and controlling using pic16f877A
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Size: 393216 |
Author: jestin |
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Description: 对双容水箱从机理建模到电路仿真,再到PID控制测试等一系列课程实习过程-Of double let water tank from the mechanism modeling to the circuit simulation, and then to the PID control test and a series of course practice process
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Size: 698368 |
Author: zhonga |
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Description: 用水位传感器,采集水箱和水井的水位信息,以判断水箱和水井是否缺水;用温度传感器,采集温度信息,以判断是否易结冰;从而更好地控制水泵的正常运转。达到供水系统的智能运转。-With water level sensor, collecting water and well water level information, to determine whether water tank and water well of water With a temperature sensor, temperature information collected, in order to determine whether easy to freeze To better control the normal operation of pump.Water supply system of intelligent operation.
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Size: 15360 |
Author: 姚盛华 |
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Description: 利用汇编语言编写的水箱控制系统,以8051单片机为核心控制800立方米的水箱的水位,并实现了报警和手动、自动切换功能。-The use of assembly language to prepare the water tank control system, with 8051 single-chip microcomputer as the core to control the water level of 800 cubic meters of water tanks, and to achieve the alarm and manual, automatic switching function.
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Size: 74752 |
Author: 杨彪 |
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Description: 水箱液位的模糊控制,带simulink仿真图,有示波器图像,双击simulink中的fuzzy模块输入water.fis即可运行(The fuzzy control of the water level of the water tank, with the Simulink simulation chart, the oscilloscope image, double click the fuzzy module in the Simulink to enter the water.fis)
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Size: 6144 |
Author: jiayoushu |
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Description: 概述:本范例演示水箱水位的过程模拟。过程中添加噪声、阀门死区、滞后和死区时间。液位控制器调整水箱的输入。开/关阀作为一个排水口,可点击操作。该s阀表示过程负载变化。该VI可以在自动、手动控制间切换。
操作步骤:
1.运行VI。
2.闭环中检查PID控制器,跟踪设定值。
3.改变设定值,检查控制器跟踪新设定值。
4.切换阀门HV 102(单击阀门符号),对系统应用干扰。可观察到控制器从变化中恢复。
5.改变PID增益,并观察是否能在稳态下提高其性能。
6.切换到手动模式并观察是否可以通过改变阀门LVC 101来控制水位。
7.单击停止按钮停止VI。(Summary: this example demonstrates the process simulation of water tank level. Add noise, valve dead zone, lag and dead time. The level controller adjusts the input of the water tank. The opening / closing valve is a drainage outlet and can be operated by clicking. The S valve indicates the change of the load of the process. The VI can be switched between automatic and manual control. Operation steps: 1. run VI. 2. the PID controller is checked in the closed loop, and the set value is tracked. 3. change the set value and check the controller to track the new setting value. 4. switch the valve HV 102 (click the valve symbol) to interfere with the system. The controller can be observed to recover from the change. 5. change the gain of PID and observe whether it can improve its performance under steady state.)
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Size: 20480 |
Author: lez003 |
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