A feedback control approach to convex optimization with inequality constraints

V. Cerone, S. M. Fosson, S. Pirrera, D. Regruto
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Abstract

We propose a novel continuous-time algorithm for inequality-constrained convex optimization inspired by proportional-integral control. Unlike the popular primal-dual gradient dynamics, our method includes a proportional term to control the primal variable through the Lagrange multipliers. This approach has both theoretical and practical advantages. On the one hand, it simplifies the proof of the exponential convergence in the case of smooth, strongly convex problems, with a more straightforward assessment of the convergence rate concerning prior literature. On the other hand, through several examples, we show that the proposed algorithm converges faster than primal-dual gradient dynamics. This paper aims to illustrate these points by thoroughly analyzing the algorithm convergence and discussing some numerical simulations.
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带不平等约束的凸优化反馈控制方法
受比例积分控制的启发,我们提出了一种用于不等式约束凸优化的新型连续时间算法。与流行的基元-双梯度动力学不同,我们的方法包含一个比例项,通过拉格朗日乘法器控制基元变量。这种方法具有理论和实践上的双重优势。一方面,它简化了平滑强凸问题的指数收敛证明,对收敛率的评估与之前的文献相比更加直接。另一方面,通过几个例子,我们表明所提出的算法比原始-双梯度动力学收敛得更快。本文旨在通过深入分析算法收敛性和讨论一些数值模拟来说明这些观点。
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