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Non-linear programming for filter management in a fluid power system with uncertainty

机译:具有不确定性的流体动力系统中过滤器管理的非线性编程

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摘要

In this study, non-linear programming for filter management in a fluid power system is developed for the assessment of filter allocation and replacement strategies in a fluid power system (FPS). The developed model can effectively tackle uncertainties existing as interval values and fuzzy sets, through introducing independent control variables and L-R fuzzy numbers into the interval non-linear programming (INP) framework. Moreover, in the modelling formulation, the service life of the pump and the cost of filter maintenance are included in the objective function to reflect the effect of strategies. The developed method is applied to the filter management of an FPS with a bypass nitration system. The results indicate that reasonable solutions have been generated. Not only can they help identify optimal filter allocation and replacement strategies to control the contamination of FPSs, but also they can provide decision makers more information regarding trade-offs among system cost, certainty and safety in comparison with the INP model.
机译:在这项研究中,开发了用于流体动力系统中过滤器管理的非线性程序,用于评估流体动力系统(FPS)中的过滤器分配和更换策略。通过将独立的控制变量和L-R模糊数引入区间非线性规划(INP)框架,开发的模型可以有效地解决作为区间值和模糊集存在的不确定性。此外,在建模公式中,泵的使用寿命和过滤器维护成本都包含在目标函数中,以反映策略的效果。所开发的方法应用于带有旁路硝化系统的FPS的过滤器管理。结果表明已经产生了合理的解决方案。与INP模型相比,它们不仅可以帮助确定最佳的过滤器分配和更换策略来控制FPS的污染,而且还可以为决策者提供更多有关系统成本,确定性和安全性之间权衡的信息。

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