The effect of finite buffers on the optimal safety stock for unreliable systems

M. Giordano, F. Martinelli, P. Valigi
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引用次数: 3

Abstract

In this paper we consider a single part-type, single unreliable machine production system under a fluid approximation to describe the part flow through the system. We will assume that only a finite space is available for waiting demand and customers arriving when the backlog buffer is full are rejected, incurring in a penalty. The problem is to determine a production control which minimizes an infinite horizon average loss/backlog/surplus cost. In the infinite buffer capacity case, this problem is solved by a hedging point policy. In this paper we consider the finite capacity case, and based on an equation presented in a previous paper we discuss the effect of some meaningful parameters on the computed hedging point and the effect of finite buffers on the optimality of Just In Time (JIT) policies. An adaptive control algorithm is realized to determine the optimal hedging point when the system parameters are not known and must be estimated through the observation of the system.
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有限缓冲对不可靠系统最优安全库存的影响
本文考虑一个单零件型、单不可靠机械生产系统,在流体近似下描述零件流经系统的流动。我们将假设只有有限的空间可用于等待需求,并且当积压缓冲区已满时到达的客户被拒绝,从而产生罚款。问题在于确定一种生产控制,使无限范围内的平均损失/积压/剩余成本最小化。在无限缓冲容量的情况下,用对冲点策略来解决这个问题。本文考虑了有限容量的情况,并在前人所提方程的基础上,讨论了一些有意义的参数对计算的对冲点的影响,以及有限缓冲区对准时制策略最优性的影响。实现了一种自适应控制算法,在系统参数未知且必须通过观察系统来估计的情况下确定最优对冲点。
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