Title
Fast second-order cone programming for safe mission planning
Abstract
This paper considers the problem of safe mission planning of dynamic systems operating under uncertain environments. Much of the prior work on achieving robust and safe control requires solving second-order cone programs (SOCP). Unfortunately, existing general purpose SOCP methods are often infeasible for real-time robotic tasks due to high memory and computational requirements imposed by existing general optimization methods. The key contribution of this paper is a fast and memory-efficient algorithm for SOCP that would enable robust and safe mission planning on-board robots in realtime. Our algorithm does not have any external dependency, can efficiently utilize warm start provided in safe planning settings, and in fact leads to significant speed up over standard optimization packages (like SDPT3) for even standard SOCP problems. For example, for a standard quadrotor problem, our method leads to speedup of 1000× over SDPT3 without any deterioration in the solution quality. Our method is based on two insights: a) SOCPs can be interpreted as optimizing a function over a polytope with infinite sides, b) a linear function can be efficiently optimized over this polytope. We combine the above observations with a novel utilization of Wolfe's algorithm [1] to obtain an efficient optimization method that can be easily implemented on small embedded devices. In addition to the above mentioned algorithm, we also design a two-level sensing method based on Gaussian Process for complex obstacles with non-linear boundaries such as a cylinder.
Year
DOI
Venue
2017
10.1109/ICRA.2017.7989014
2017 IEEE International Conference on Robotics and Automation (ICRA)
Keywords
DocType
Volume
second-order cone programming,safe mission planning,dynamic systems,SOCP,realtime robotic tasks,optimization methods,linear function,Wolfe algorithm,Gaussian process,two-level sensing method
Conference
abs/1609.05243
Issue
ISBN
Citations 
1
978-1-5090-4634-8
1
PageRank 
References 
Authors
0.36
11
3
Name
Order
Citations
PageRank
Zhong, Kai11097.47
Prateek Jain210.36
Ashish Kapoor31833119.72