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A new superlinearly convergent norm-relaxed method of strongly sub-feasible direction for inequality constrained optimization

机译:不等式约束优化的强次可行方向的超线性收敛范型松弛新方法

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摘要

Method of feasible directions (MFD) is an important method for solving nonlinearly constrained optimization. However, various types of MFD all need an initial feasible point, which can not be found easily in generally. In addition, the computational cost of some MFD with superlinearly convergent property is rather high. On the other hand, the strongly sub-feasible direction method does not need an initial feasible point, but most of the proposed algorithm do not have the superlinearly convergent property, and can not guarantee that the iteration point is feasible after finite iterations. In this paper, we present a new superlinearly convergent algorithm with arbitrary initial point. At each iteration, a master direction is obtained by solving one direction finding subproblem (DFS), and an auxiliary direction is yielded by an explicit formula. After finite iterations, the iteration point goes into the feasible set and the master direction is a feasible direction of descent. Since a new generalized projection technique is contained in the auxiliary direction formula, under some mild assumptions without the strict complementarity, the global convergence and superlinear convergence of the algorithm can be obtained. (c) 2006 Elsevier Inc. All rights reserved.
机译:可行方向方法(MFD)是解决非线性约束优化问题的重要方法。但是,各种类型的MFD都需要一个初始可行点,这通常很难找到。另外,一些具有超线性收敛性质的MFD的计算成本很高。另一方面,强次可行方向方法不需要初始可行点,但是大多数提出的算法都没有超线性收敛性,并且不能保证有限迭代后迭代点是可行的。在本文中,我们提出了一种新的具有任意初始点的超线性收敛算法。在每次迭代中,通过求解一个测向子问题(DFS)获得主方向,并通过显式公式生成辅助方向。经过有限迭代后,迭代点进入可行集,主方向是下降的可行方向。由于辅助方向公式中包含一种新的广义投影技术,因此在没有严格互补性的一些温和假设下,可以获得该算法的全局收敛性和超线性收敛性。 (c)2006 Elsevier Inc.保留所有权利。

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