Title :
Approximation algorithms for scheduling unrelated parallel machines
Author :
Lenstra, Jan Karel ; Shmoys, David B. ; Tardos, Eva
Abstract :
We consider the following scheduling problem. There are m parallel machines and n independent jobs. Each job is to be assigned to one of the machines. The processing of job j on machine i requires time pij. The objective is to find a schedule that minimizes the makespan. Our main result is a polynomial algorithm which constructs a schedule that is guaranteed to be no longer than twice the optimum. We also present a polynomial approximation scheme for the case that the number of machines is fixed. Both approximation results are corollaries of a theorem about the relationship of a class of integer programming problems and their linear programming relaxations. In particular, we give a polynomial method to round the fractional extreme points of the linear program to integral points that nearly satisfy the constraints. In contrast to our main result, we prove that no polynomial algorithm can achieve a worst-case ratio less than 3/2 unless P = NP. We finally obtain a complexity classification for all special cases with a fixed number of processing times.
Keywords :
Algorithm design and analysis; Approximation algorithms; Computer science; Linear programming; Mathematics; Parallel machines; Performance analysis; Polynomials; Processor scheduling; Scheduling algorithm;
Conference_Titel :
Foundations of Computer Science, 1987., 28th Annual Symposium on
Conference_Location :
Los Angeles, CA, USA
Print_ISBN :
0-8186-0807-2
DOI :
10.1109/SFCS.1987.8