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Application of Lexicographic Goal Programming with Convex Optimization in Control Systems

机译:具有凸优化的词典目标规划在控制系统中的应用。

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Goal Programming (GP) is a multi-objective optimization technique that is used when there are multiple conflicting goals in the cost function of an optimization problem. Lexicographic Goal Programming (LGP) is most commonly used form of GP when there are clear priorities in the goals that leads to a lexicographic order, i.e., priroritization. We can solve LGP problems by solving a sequence of optimization problems, where the optimal cost of an optimization problem in the sequence becomes a constraint for all optimization problems that are solved afterwards. In this paper, we present the basic LGP framework where each problem in the sequence is a convex optimization problem. We provide examples from control systems where LGP is a natural choice due to the clear priorities of objectives. LGP formulation leads to a sequence of convex optimization problems, which enables us to use polynomial time Interior Point Method (IPM) algorithms to solve these problems efficiently and potentially in real-time. In some cases, we also show that this prioritization provides convexification of the problem at hand, which would have otherwise required the solution of a non-convex optimization problem. Our primary objective in writing this paper is to illustrate the usefulness LGP formulation of control problems that can be encountered in aerospace engineering.
机译:目标编程(GP)是一种多目标优化技术,当优化问题的成本函数中存在多个相互冲突的目标时,将使用该技术。当目标中有明确的优先级导致字典顺序(即优先排序)时,字典式目标编程(LGP)是GP的最常用形式。我们可以通过解决一系列优化问题来解决LGP问题,其中一系列优化问题的最优成本成为后来解决的所有优化问题的约束。在本文中,我们介绍了基本的LGP框架,其中序列中的每个问题都是凸优化问题。我们提供了控制系统的示例,由于明确的目标优先顺序,LGP是自然选择的控制系统。 LGP公式会导致一系列凸优化问题,这使我们能够使用多项式时间内部点方法(IPM)算法来有效且潜在地实时解决这些问题。在某些情况下,我们还表明,这种优先级排序可以解决手头问题,否则就需要解决非凸优化问题。我们撰写本文的主要目的是说明在航空航天工程中可能遇到的控制问题LGP公式化的有用性。

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