首页 /研究 /A Near-Optimal Separation Principle for Nonlinear Stochastic Systems Arising in Robotic Path Planning and Control
OTHER

A Near-Optimal Separation Principle for Nonlinear Stochastic Systems Arising in Robotic Path Planning and Control

Mohammadhussein Rafieisakhaei, Suman Chakravorty, P. R. Kumar

发表年份
2017
引用次数
5
访问权限
开放获取

摘要

We consider nonlinear stochastic systems that arise in path planning and control of mobile robots. As is typical of almost all nonlinear stochastic systems, the optimally solving problem is intractable. We provide a design approach which yields a tractable design that is quantifiably near-optimal. We exhibit a "separation" principle under a small noise assumption consisting of the optimal open-loop design of nominal trajectory followed by an optimal feedback law to track this trajectory, which is different from the usual effort of separating estimation from control. As a corollary, we obtain a trajectory-optimized linear quadratic regulator design for stochastic nonlinear systems with Gaussian noise.

关键词

Control theory (sociology)Nonlinear systemTrajectoryOptimal controlSeparation principleCorollaryPath (computing)Noise (video)Stochastic controlMathematical optimization

相关论文

查看 OTHER 分类全部论文