2022年毕业设计方案外文资料翻译应用于电气系统的可编程控制器PLC免费下载.docx
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1、精选学习资料 - - - - - - - - - 应用于电气系统的可编程序掌握器此工程主要是讨论电气系统以及简洁有效的掌握气流发动机的程序和气流 系统的状态;它的实践基础包括基于气流的专有掌握器、自动化设计、气流系 统的掌握程序和基于微掌握器的电子设计;1.简介使用电气技术的自动化系统主要由三个组成部分:发动机或马达,感应器 或按钮,状如花瓣的掌握零部件;现在,大部分的系统规律操作的掌握器都被 程序规律掌握器 表示主动器 A 向前推动,而 A- 表示返回到开头的位置;同时发生的运动在相同的步骤中被一起叠加;这个系统共有有五个步骤;图 6 A ,B ,C ,D 传动装置传动次序图5和6所表现的系
2、统运行清晰的描述了全部序列;利用他们我们可以用必需的规律语言设计整个的掌握线路;但是现在仍它仍不是一个完整的系统,因为它仍缺少一些帮助设施 ;使用传统的 PLC的,如图 7,8所示,在绘制接口处的电图表时,要留意线 路的规律;使用这种可编程的掌握器,使用者必需知道运行方法的观念并且规 划每个步骤的结构;那就是说,使用传统的PLC,使用者清晰各个操作之间的关系;一般情形下,使用者可以在接口上运行一个模拟程序查找规律上的错误同之前所述的一 样,新的编程答应每一步骤的结构被分割;序列独自被定义,但每一步骤只被 输入和输出端描述;图9 A ,B 传动装置和传感器图10 C ,D 传动装置和传感器表 5
3、 表现的是使用系统如何被贮存在掌握器里,这在前文中也具体说明过;序列被 25个位元组所定义;这些位元组被分成 5组,每一组描述系统运行的一个步骤; . Sensors and switches are plugged as inputs and the direct control valves for the actuators are plugged as outputs. An internal program executes all the logic necessary to the sequence of the movements, simulates other compon
4、ents like counter, timer and control the status of the system. With the use of the PLC, the project wins agility, because it is possible to create and simulate the system as many times as needed. Therefore, time can be saved, risk of mistakes reduced and complexity can be increased using the same el
5、ements. A conventional PLC, that is possible to find on the market from many companies, offers many resources to control not only pneumatic systems, but all kinds of system that uses electrical components. The PLC can be very versatile and robust to be applied in many kinds of application in the ind
6、ustry or even security system and automation of buildings. Because of those characteristics, in some applications the PLC offers to much resources that are not even used to control the system, electro-pneumatic system is one of this kind of application. The use of PLC, especially for small size syst
7、ems, can 8 / 21 名师归纳总结 - - - - - - -第 8 页,共 21 页精选学习资料 - - - - - - - - - be very expensive for the automation project. An alternative in this case is to create a specific controller that can offer the exactly size and resources that the project needs 3, 4. This can be made using microcontrollers as
8、the base of this controller. The controller, based on microcontroller, can be very specific and adapted to only one kind of machine or it can work as a generic controller that can be programmed as a usual PLC and work with logic that can be changed. All these characteristics depend on what is needed
9、 and how much experience the designer has with developing an electronic circuit and firmware for microcontroller. But the main advantage of design the controller with the microcontroller is that the designer has the total knowledge of his controller, which makes it possible to control the size of th
10、e controller, change the complexity and the application of it. It means that the project gets more independence from other companies, but at the same time the responsibility of the control of the system stays at the designer hands 2. Electro-pneumatic system On automation system one can find three b
11、asic components mentioned before, plus a logic circuit that controls the system. An adequate technique is needed to project the logic circuit and integrate all the necessary components to execute the sequence of movements properly. For a simple direct sequence of movement an intuitive method can be
12、used 1, 5, but for indirect or more complex sequences the intuition can generate a very complicated circuit and signal mistakes. It is necessary to use another method that can save time of the project, make a clean circuit, can eliminate occasional signal overlapping and redundant circuits. The pres
13、ented method is called step-by-step or algorithmic 1, 5, it is valid for pneumatic and electro-pneumatic systems and it was used as a base in this work. The method consists of designing the systems based on standard circuits made for each change on the state of the actuators, these changes are calle
14、d steps. 9 / 21 名师归纳总结 - - - - - - -第 9 页,共 21 页精选学习资料 - - - - - - - - - The first part is to design those kinds of standard circuits for each step, the next task is to link the standard circuits and the last part is to connect the control elements that receive signals from sensors, switches and the
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