Analysis of the robustness of a single-tier pipeline inventory model

A. White, M. Censlive
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Abstract

This paper examines the conditions necessary to specify a robust element of a supply chain using control theory and proposes a new robustness criterion clearly separating robustness from resilience. Algebraic analysis, using the Mikhailov criterion to determine robustness, yields simple criteria for an automatic pipeline with variable inventory and order-based production control system (APVIOBPCS) model. Models implemented with either exponential delays or finite delays are found to be completely robust. A new robustness measurement criterion is defined and applied to a case study of RAM manufacture. Results show that the continuous model of an APVIOBPCS system with an exponential delay has a wider allowable range of process delay time than other models and the range of permissible delay is sufficient to cope with a substantial increase in process delay time while retaining adequate performance and stability. Use of nonlinear inventory generally reduces the robustness range. The techniques used here can also determine the effects of other parameters on robustness.
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单层管道库存模型的鲁棒性分析
本文利用控制理论研究了供应链鲁棒性要素的必要条件,并提出了一个新的鲁棒性标准,明确地将鲁棒性与弹性分离开来。代数分析,使用米哈伊洛夫准则来确定鲁棒性,产生具有可变库存和基于订单的生产控制系统(APVIOBPCS)模型的自动管道的简单标准。采用指数延迟或有限延迟实现的模型具有完全的鲁棒性。定义了一种新的鲁棒性测量准则,并将其应用于RAM制造案例研究。结果表明,具有指数延迟的APVIOBPCS系统的连续模型比其他模型具有更宽的过程延迟时间允许范围,并且允许的延迟范围足以应对过程延迟时间的大幅增加,同时保持足够的性能和稳定性。非线性库存的使用通常会减小鲁棒性范围。这里使用的技术还可以确定其他参数对鲁棒性的影响。
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