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Control-oriented approaches to supply chain management in semiconductor manufacturing

机译:面向控制的半导体制造供应链管理方法

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After describing the general supply chain management problem with examples from the semiconductor industry, attention is restricted to the core manufacturing problem. Using a control-oriented approach for this nonlinear stochastic combinatorial optimization problem, an outer loop for addressing the planning parts of the problem and an inner loop to manage the execution aspects are proposed. The outer loop provides a material release plan generated by a linear programming formulation (LP) and inventory safety stock targets generated by a dynamic programming formulation (DP) to the inner loop to guide execution. Portions of the nonlinearity and stochasticity inherent in the problem are addressed by the outer loop that requires iterative convergence between the LP and the DP. The inner loop is formulated from the perspective of model predictive control (MPC) and integrates optimal control and stochastic control. Initial results are presented to demonstrate the ability of the inner loop to track material release and safety stock targets while improving delivery performance in the face of both supply and demand stochasticity. A simulation module is also described that supports the other components of the system by validating their efficacy before application in the real world. This component has to address the integrated flows of materials, information, and decisions through the supply chain, and employs innovative approaches combining a number of specialized models to do so quickly and accurately.
机译:在用半导体行业的例子描述了一般的供应链管理问题之后,注意力只集中在核心制造问题上。针对这种非线性随机组合优化问题,采用面向控制的方法,提出了一个用于解决问题计划部分的外循环和一个用于管理执行方面的内循环。外循环向内循环提供由线性规划公式(LP)生成的物料释放计划和由动态规划公式(DP)生成的库存安全库存目标,以指导执行。问题固有的非线性和随机性部分由需要在LP和DP之间进行迭代收敛的外循环解决。内环是从模型预测控制(MPC)的角度制定的,并集成了最优控制和随机控制。提出了初步结果,以证明内部回路跟踪物料释放和安全库存目标的能力,同时在面对供需随机性的同时提高交货性能。还描述了一个仿真模块,该模块通过在实际应用之前验证其有效性来支持系统的其他组件。该组件必须解决整个供应链中物料,信息和决策的集成流,并采用创新方法,将许多专业模型结合在一起,以快速,准确地做到这一点。

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