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Identification of Contamination Control Strategy for Fluid Power System Using an Inexact Chance-Constrained Integer Program

机译:使用不精确的机会约束整数计划识别流体电力系统的污染控制策略

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摘要

An inexact chance-constrained integer programming (ICIP) method is developed for planning contamination control of fluid power system (FPS). The ICIP is derived by incorporating chance-constrained programming (CCP) within an interval mixed integer linear programming (IMILP) framework, such that uncertainties presented in terms of probability distributions and discrete intervals can be handled. It can also help examine the reliability of satisfying (or risk of violating) system constraints under uncertainty. The developed method is applied to a case of contamination control planning for one typical FPS. Interval solutions associated with risk levels of constraint violation are obtained. They can be used for generating decision alternatives and thus help designers identify desired strategies under various environmental, economic, and system reliability constraints. Generally, willingness to take a higher risk of constraint violation will guarantee a lower system cost; a strong desire to acquire a lower risk will run into a higher system cost. Thus, the method provides not only decision variable solutions presented as stable intervals but also the associated risk levels in violating the system constraints. It can therefore support an in-depth analysis of the tradeoff between system cost and system-failure risk.
机译:开发了一种不精确的机会约束整数编程(ICIP)方法,用于规划流体电力系统(FPS)的污染控制。通过在间隔混合整数线性编程(IMILP)框架内结合机会约束的编程(CCP)来导出ICIP,使得可以处理概率分布和离散间隔的不确定性。它还可以帮助检查在不确定性下满足(或违反)系统限制的可靠性。开发方法应用于一个典型FPS的污染控制规划的情况。获得与限制违规风险水平相关的间隔解决方案。它们可用于产生决策替代方案,从而帮助设计人员在各种环境,经济和系统可靠性约束下确定所需的策略。一般来说,对违规风险更高的愿望将保证系统成本较低;获得较低风险的强烈愿望将达到更高的系统成本。因此,该方法不仅提供呈现稳定间隔的决策变量解决方案,而且提供违反系统约束的相关风险级别。因此,它可以支持对系统成本和系统故障风险之间的权衡的深入分析。

著录项

  • 作者

    Y. Q. Huang; S. L. Nie; H. Ji;

  • 作者单位
  • 年度 2014
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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