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Improving Performance In Flexible Manufacturing Systems

机译:改善柔性制造系统的性能

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The need for flexible manufacturing systems (FMSs) has become of utmost importance over the last years due to the fierce competition present in the manufacturing industry as well as the ever decreasing product life spans and the markets attempts to respond to customers' changing needs. These systems allow us to react quickly to changes, however this flexibility costs both time and money. Given this fact, it would be desirable to reduce costs by testing potential implementations before using them. We will use a timed process algebra called BTC (for bounded true concurrency) to face up to this challenge. We have developed this algebra by extending CSP in order to consider the duration of actions and the context (resources) in which processes are executed. This new algebra is able to take into account that the resources in a system must be shared by all the processes. So, we can find two kinds of delays in the execution of a process: delays related to the synchronization of processes, and delays related to the allocation of resources. Once FMSs are specified by means of BTC, we will focus our attention on the performance of the system which will be variable depending on the number of available resources. For this, we have developed a performance algorithm and a tool which implements it. Three examples are used to show how an FMS can be specified and how the algorithm and the tool work, allowing us to obtain the best performance with the lowest cost.
机译:过去几年,由于制造业中的激烈竞争以及产品寿命的不断缩短以及市场试图响应客户不断变化的需求,对柔性制造系统(FMS)的需求已变得至关重要。这些系统使我们能够对变化做出快速反应,但是这种灵活性既浪费时间又花费金钱。考虑到这一事实,希望通过在使用潜在实现之前对其进行测试来降低成本。我们将使用称为BTC(用于有限的真正并发)的定时流程代数来应对这一挑战。我们通过扩展CSP来开发此代数,以便考虑操作的持续时间和执行过程的上下文(资源)。这个新的代数能够考虑到系统中的资源必须由所有进程共享。因此,我们可以在流程执行中发现两种延迟:与流程同步相关的延迟和与资源分配相关的延迟。一旦通过BTC指定了FMS,我们将把注意力集中在系统的性能上,该性能将根据可用资源的数量而变化。为此,我们开发了一种性能算法和实现该算法的工具。使用三个示例来说明如何指定FMS以及算法和工具的工作方式,从而使我们能够以最低的成本获得最佳的性能。

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