Discrete dynamic optimization of N-stages control for isolated signalized intersections

The N-stages control problem for isolated signalized intersections is defined as the control problem to disperse initial queue lengths to their optimal steady-state values in N cycles. Based on a discrete-event model of a simplified isolated signalized intersection, the N-stages control problem is f...

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Vydané v:Control engineering practice Ročník 21; číslo 11; s. 1553 - 1563
Hlavní autori: Haddad, Jack, Gutman, Per-Olof, Ioslovich, Ilya, Mahalel, David
Médium: Journal Article
Jazyk:English
Vydavateľské údaje: Elsevier Ltd 01.11.2013
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ISSN:0967-0661, 1873-6939
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Shrnutí:The N-stages control problem for isolated signalized intersections is defined as the control problem to disperse initial queue lengths to their optimal steady-state values in N cycles. Based on a discrete-event model of a simplified isolated signalized intersection, the N-stages control problem is formulated as a linear programming problem as well as a quadratic programming problem. A new algorithm is proposed for solving the discrete optimization problem by simple calculations, based on the optimal solution of the corresponding continuous-time problem. Numerical comparisons between the continuous-time optimal solution and the discrete-event optimal solutions, obtained from linear programming and sequential quadratic programming, are given for a few examples.
Bibliografia:ObjectType-Article-2
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content type line 23
ISSN:0967-0661
1873-6939
DOI:10.1016/j.conengprac.2013.07.007