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A Fuzzy Optimal Control Inventory Model of Product-Process Innovation and Fuzzy Learning Effect in Finite Time Horizon

机译:有限时间范围内产品过程创新与学习效果的模糊最优控制库存模型

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In this study, we have introduced a fuzzy dynamic optimal control model of process-product innovation with learning by doing. The firm's cost functions of product and process innovation depend on investment in both the innovations and the gathering of knowledge of product and process innovation. In this model, the product price, and the investments of product and process innovation are control variables; the product quality, production cost, and the change rates of gathering knowledge accumulations of product and process innovation are state variables. To represent the model more realistically, we considered all the variables are fuzzy in nature. The main goal of this report is to probe the relationships between these variables and investigate the optimality criteria for the model. The model is formulated as a single objective profit maximization problem in the single period finite time horizon and solved numerically using Runge-Kutta forward-backward method of fourth order using MATLAB software. Further, some numerical experiments are performed and the graphical representation of the results are also depicted to illustrate the model. Also a sensitivity analysis is conducted to study the issue of varying the parameters and coefficients on the target function value.
机译:在这项研究中,我们引入了边做边学的过程产品创新的模糊动态最优控制模型。公司产品和过程创新的成本函数取决于对创新的投资以及对产品和过程创新的知识的收集。在此模型中,产品价格以及产品和流程创新的投资是控制变量。产品质量,生产成本以及收集产品知识积累和过程创新的变化率是状态变量。为了更真实地表示模型,我们认为所有变量本质上都是模糊的。本报告的主要目标是探究这些变量之间的关系,并研究模型的最佳标准。该模型被公式化为单个周期有限时间范围内的单个目标利润最大化问题,并使用MATLAB软件使用四阶Runge-Kutta前后方法对数值进行求解。此外,进行了一些数值实验,并且还描绘了结果的图形表示以说明模型。还进行了敏感性分析,以研究改变目标函数值上的参数和系数的问题。

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