基于混合PLC控制器的柔性制造系统英文翻译.doc
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1、毕业设计(论文)英文翻译(学号): 毕 业 设 计(论 文)译文姓 名 学 院机电工程分院专 业 班 级 指导教师 Theoretical Computer Science 253 2009Developing a Hybrid Programmable Logic Controller Platform for a Flexible Manufacturing SystemHenning Dicrks University of Oldenburg Fachbereich Informatik P ostfach 2503 2900 Oldenburg. GermanyAbstract: I
2、n this article, we present the design and implementation of a flexible manufacturing system (FMS) control platform based on a programmable logic controller (PLC) and a personal computer (PC)-based visual man-machine interface (MMI) and data acquisition (DAS) unit. The key aspect of an FMS is its fle
3、xibility to adapt to changes in a demanding process operation. The PLC provides feasible solutions to FMS applications, using PC-based MMI/DAS, whereby PLCs are optimized for executing rapid sequential control strategies. PCs running MMI/DAS front-ends make intuitive operation interfaces, full of po
4、werful graphics and reporting tools. Information from the PC can be distributed through a companys local area network or web using client-server technologies. Currently, with the convergence of underlying microprocessor technology and software program-ming techniques, many users find that PLCs provi
5、de a cost-effective solution to real-time control in small- to medium-sized process plants, especially when combined with supervisory PCs using hybrid systems. The major work of this article demonstrates that PLCs are responsive to rapid and repetitious control tasks, using PCs that present the flow
6、 of information automation and accept operator instructions, thereby providing the user a tool to modify and monitor the process as the requirements change.Key Words: PLC、FMS、PC.1IntroductionEarly in the last century seventys introduction of flexible manufacturing system ( FMS ) is the product of ma
7、nufacturing industry in the production of the highest degree of automation. Since the flexible manufacturing system in the large scale production of highly efficient recognition, flexible manufacturing system are substantially growth ( Groover and Zimmers,1984). Manufacturing industry of global comp
8、etition has led to the accelerated development of flexible manufacturing system. Flexible manufacturing system reduces the manufacturing cycle and reduce the cost of production.In general, a flexible manufacturing system composed of a group of machines or other automated workstation, form a modular
9、system, such as CNC machine tools, robots, visual system, and to a process station. These interrelated material handling systems are usually controlled by a computer drive ( Maleki,1991). Each modular system requires a separate modular control system, with individual unit controller for controlling
10、the different components. All modular subsystems as usual by computer control. The controller in than their more senior controller under the supervision of their respective operation work. In this system, both the control device or the flow of information must be automated. Flexible manufacturing sy
11、stem key function is able to adapt to changes in the ability to control task. This flexibility includes it can produce parts quantity and diversity, and the running order, it can put some changes in the procedure to the corresponding flow path. Finally, the control platform should have the ability t
12、o make the data process automation.Typically, there are three types of control platform for flexible manufacturing system: microcomputer, a micro processor and programmable logic controller ( Maleki,1991). The microcomputer is the most suitable for complex, large-scale, continuous, supervision contr
13、ol and other aspects of the application. The programmable logic controller is used for rapid and repeated logic control. Personal computer ( PC ) is suitable for the function of operation interface. Gradually, the development of PLCs will replace the relay, would create an industrial environment, mo
14、re convenient plant engineers and repair personnel changes, and keep the plant electrician. Now, with the microprocessor technology and software programming technology convergence, many users find the PLCs for small - to medium-sized program machine real-time control has a cost effective solution, e
15、specially when using mixed and management system with personal computerGenerally, an FMS consists of a group of machines or other automated work stations, which form into modular subsystems, such as CNC machines, robots, vision systems, and a process station. These are interconnected by a materials
16、handling system and usually driven by a computer(Maleki,1991).Each modular system requires an individual modular control system, with different components being controlled by individual controller units. All of the modular subsystems are controlled by computers as usual. These controllers perform th
17、eir intended tasks under supervision of a higher level controller. To the system, both the control devices as well as the flow of information need to be automated. The key aspect of an FMS is its ability to adapt to changes in the control tasks. This flexibility includes the quantities and varieties
18、 of part types which it can produce, the order in which operations may be performed, and its ability to reroute parts back into flow paths. In the end, the control platform should have the capability to automate the flow of information.Typically, there are three types of control platforms used in FM
19、Ss: minicomputers, microcomputers, and PLCs (Maleki, 1991). The minicomputers are best suited for complex large-scale, continuous ,regulatory control applications . The PLCs are used for rapid and repetitious logic control. Personal computers (PCs) are suited for operator interface functions. Primar
20、ily, PLCs are designed to replace hardwiring relays, to operate in an industrial environment, to be easily modified by plant engineers and maintenance personnel, and to be maintained by plant electricians. Currently, with the convergence of underlying microprocessor technology and software programmi
21、ng, many users find that PLCs provide a cost-effective solution to real-time control in small-to medium-sized process plants, especially when combined with supervisory PCs using hybrid systems.The purpose of this article is to address the state-of-the-art technology of FMSs. The design and construct
22、ion of an FMS using PLC-controlled and PC-based visual man-machine interface(MMI) and data acquisition system(DAS) are presented. It is organized as follows. Section 2 begins with the description of the FMS on the factory floor of the Center for Manufacturing System sat the NewJersey Institute of Te
23、chnology(NJIT).Section 3 shows the operational description of the FMS. Sections 4 and 5 present the applications of PLC-controlled and PC-based MMI/DAS for the FMS at NJIT. Section 6 contains a summary of the advantages of this PLC-controlled and PC-based MMI/DAS for FMS application.2. Description o
24、f the FMSSI handling conveyor systemThis consists of four carts, A, B, C, and D, with fixtures mounted on each, two transfer tables,TT1 and TT2 , and dual conveyors which transport materials to each workstation.Figure 1. Flexible manufacturing system.NASA II CNC milling machineThe milling machine ac
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