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Ladder Diagram Design Based On Huffman Method For Selection And Assembling Part on Dual Conveyor Plant

机译:基于Huffman方法的阶梯式图设计,用于双输送机厂的选择和组装部分

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Constructing ladder diagrams for very complicated processes such as handling, assembly, welding, loading, unloading, sealing and painting may be possible with heuristic methods, but the success of the heuristic method depends greatly on the experience of the progrmmer. It will be easier to construct the ladder diagram if there is a clear method of steps in constructing the ladder diagram. Especially for newly learning PLC programming language using Ladder diagram. This paper will discuss the application of the Huffman method to construct a ladder diagram that is implemented in Plant Dual Conveyor. Conveyors are often used in manufacturing industry especially for assembly process. Programmable Logic Controller (PLC) acts as conveyor controller with programming language ladder diagram. Ladder diagrams will arrange orders gradually or sequentially. Huffman method is known as a method that aims to minimize the use of relays but the more complex problems handled the more complicated the process. However, by dividing the system into several sub systems then the system can be solved by this method but the goal of minimizing the use of relays becomes less. By using Huffman method, the result from construction of ladder diagram is obtained by 16 rung, 16 timer, 10 relay, and the program capacity is 3 KB.
机译:构建梯形图,用于非常复杂的过程,如操作,装配,焊接,装卸,密封和涂装,但启发式方法的成功取决于Progrmmer的经验。如果在构建梯形图中存在明确的步骤,则更容易构造梯形图。特别是对于使用梯形图的新学习PLC编程语言。本文将讨论霍夫曼方法的应用构建植物双输送机中实现的梯形图。输送机通常用于制造业,特别是用于装配过程。可编程逻辑控制器(PLC)用作具有编程语言梯形图的传送控制器。梯形图将逐渐或顺序排列订单。霍夫曼方法被称为旨在最大限度地减少继电器的使用,但处理的过程更复杂的问题更复杂。然而,通过将系统划分为几个子系统,然后系统可以通过该方法解决,但最小化继电器的使用的目标变得越来越小。通过使用Huffman方法,由梯形图构造的结果由16个梯级,16个定时器,10个继电器获得,程序容量为3 kB。

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