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Multi-agent-based approach to solve part selection and task allocation problem in flexible manufacturing systems

机译:基于多主体的方法来解决柔性制造系统中的零件选择和任务分配问题

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摘要

Agent technology is currently being considered as an important approach for developing intelligent manufacturing systems. It offers a new way of thinking about many of the classical problems in manufacturing engineering. A multi-agent-based approach for solving the part allocation problems in flexible manufacturing systems (FMS) is presented that can easily cope with the dynamic environment. Four agents were involved in carrying out the tasks of allocating parts on different machines: communicator, machine, part and material handling device (MHD). Upon arrival in the manufacturing facility, the part informs the communicator agent about the task requirements. The communicator agent divides the task into subtasks and sends a call-for-bids message to the machine and MHD agents. Each machine responds in accordance with its process capabilities and buffer limit. This response may be for the whole task or for one or more subtasks and it contains the price and cost details for these subtasks along with the performance index and acceptance ratio of the machine. The final allocation is made based on the objective function that includes processing and transportation costs and time. An algorithm is presented that is used by the communicator agent for allocating parts to different machines. An illustrative example is given to solve the task allocation on five machines, with each machine having different performance index and acceptance ratio.
机译:当前,代理技术被认为是开发智能制造系统的重要方法。它提供了一种思考制造工程中许多经典问题的新方法。提出了一种用于解决柔性制造系统(FMS)中零件分配问题的基于多主体的方法,该方法可以轻松应对动态环境。四个代理商参与了在不同机器上分配零件的任务:通信器,机器,零件和物料搬运设备(MHD)。到达制造工厂后,该零件将任务要求告知通信代理。通信代理将任务划分为多个子任务,并向机器代理和MHD代理发送要约呼叫消息。每台机器都根据其处理能力和缓冲区限制做出响应。此响应可能针对整个任务,也可能针对一个或多个子任务,并且包含这些子任务的价格和成本明细,以及机器的性能指标和接受率。根据包括加工和运输成本以及时间在内的目标函数进行最终分配。提出了一种算法,通信代理程序使用该算法将零件分配给不同的机器。给出了一个说明性示例来解决五台机器上的任务分配,每台机器具有不同的性能指标和接受率。

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