DocumentCode :
3548951
Title :
Optimality Zone Algorithms for Hybrid Systems Computation and Control: From Exponential to Linear Complexity
Author :
Caines, Peter E. ; Shaikh, M. Shahid
Author_Institution :
Dept. of Electr. & Comput. Eng., McGill Univ., Montreal, Que.
fYear :
2005
fDate :
27-29 June 2005
Firstpage :
1292
Lastpage :
1297
Abstract :
Necessary conditions were obtained by Shaikh and Caines (2002, 2003 and 2004) for hybrid optimal control problems (HOCPs) which resulted in a general hybrid maximum principle (HMP); further, a class of efficient, provably convergent hybrid maximum principle (HMP) algorithms were obtained based upon the HMP. The notion of optimality zones (OZs) (2004) was introduced as a theoretical framework enabling the computation of optimal schedules for HOCPs (i.e., discrete state sequences with the associated switching times and states). This paper presents the algorithm HMPZ which fully integrates the prior computation of the OZs into the HMP algorithms. Adding (i) the computational investment in the construction of the OZs for a given HOCP, and (ii) the complexity of the computation of the optimal schedule, optimal switching time and state sequence, and the optimal continuous control input, yields a complexity estimate for the algorithm (HMPZ) which is linear (i.e., O(L)) in the number of switching times L; this is to be compared with the geometric (i.e. O(|Q|L)) growth of a direct combinatoric search over the set of schedules, where Q denotes the discrete state set of the hybrid system
Keywords :
combinatorial mathematics; computational complexity; discrete systems; maximum principle; search problems; combinatoric search; discrete state sequences; discrete state set; exponential complexity; hybrid maximum principle; hybrid optimal control problem; hybrid systems; linear complexity; optimal continuous control input; optimal schedule; optimal switching time; optimality zone algorithm; state sequence; Combinatorial mathematics; Control systems; Crystallization; Investments; Optimal control; Optimal scheduling; Regulators; Scheduling algorithm; State estimation; Yield estimation;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Intelligent Control, 2005. Proceedings of the 2005 IEEE International Symposium on, Mediterrean Conference on Control and Automation
Conference_Location :
Limassol
ISSN :
2158-9860
Print_ISBN :
0-7803-8936-0
Type :
conf
DOI :
10.1109/.2005.1467202
Filename :
1467202
Link To Document :
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