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Location and allocation problem for spare parts depots on integrated logistics support

机译:综合后勤保障中备件仓库的位置和分配问题

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In equipment integrated logistics support (ILS), the supply capability of spare parts is a significant factor. There are lots of depots in the traditional support system, which makes too many redundant spare parts and causes high cost of support. Meanwhile, the inconsistency among depots makes it difficult to manage spare parts. With the development of information technology and transportation, the supply network has become more efficient. In order to further improve the efficiency of supply-support work and the availability of the equipment system, building a system of one centralized depot with multiple depots becomes an appropriate way. In this case, location selection of the depots including centralized depots and multiple depots becomes a top priority in the support system. This paper will focus on the location selection problem of centralized depots considering ILS factors. Unlike the common location selection problem, depots in ILS require a higher service level. Therefore, it becomes desperately necessary to take the high requirement of the mission into account while determining location of depots. Based on this, we raise an optimal depot location model. First, the expected transportation cost is calculated. Next, factors in ILS such as response time, availability and fill rate are analyzed for evaluating positions of open depots. Then, an optimization model of depot location is developed with the minimum expected cost of transportation as objective and ILS factors as constraints. Finally, a numerical case is studied to prove the validity of the model by using the genetic algorithm. Results show that depot location obtained by this model can guarantee the effectiveness and capability of ILS well.
机译:在设备集成后勤支持(ILS)中,备件的供应能力是一个重要因素。传统的支持系统中有很多仓库,这使得多余的备件过多,并且支持成本很高。同时,各仓库之间的不一致使得难以管理备件。随着信息技术和交通运输的发展,供应网络变得更加高效。为了进一步提高供应支持工作的效率和设备系统的可用性,构建一个具有多个仓库的集中式仓库的系统成为一种合适的方式。在这种情况下,包括集中式仓库和多个仓库在内的仓库的位置选择成为支持系统中的头等大事。本文将重点讨论考虑ILS因素的集中式仓库的选址问题。与常见的位置选择问题不同,ILS中的仓库需要更高的服务级别。因此,迫切需要在确定仓库位置时考虑任务的高要求。基于此,我们提出了一个最佳的仓库位置模型。首先,计算预期的运输成本。接下来,分析ILS中的因素,例如响应时间,可用性和填充率,以评估开放仓库的位置。然后,建立了以最低预期运输成本为目标,ILS因素为约束条件的仓库选址优化模型。最后,通过数值实例研究了遗传算法的有效性。结果表明,该模型得到的库房位置可以很好地保证ILS的有效性和能力。

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