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Single product lot-sizing on unrelated parallel machines with non-decreasing processing times

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Published under licence by IOP Publishing Ltd
, , Citation A Eremeev et al 2018 J. Phys.: Conf. Ser. 944 012032 DOI 10.1088/1742-6596/944/1/012032

1742-6596/944/1/012032

Abstract

We consider a problem in which at least a given quantity of a single product has to be partitioned into lots, and lots have to be assigned to unrelated parallel machines for processing. In one version of the problem, the maximum machine completion time should be minimized, in another version of the problem, the sum of machine completion times is to be minimized. Machine-dependent lower and upper bounds on the lot size are given. The product is either assumed to be continuously divisible or discrete. The processing time of each machine is defined by an increasing function of the lot volume, given as an oracle. Setup times and costs are assumed to be negligibly small, and therefore, they are not considered. We derive optimal polynomial time algorithms for several special cases of the problem. An NP-hard case is shown to admit a fully polynomial time approximation scheme. An application of the problem in energy efficient processors scheduling is considered.

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10.1088/1742-6596/944/1/012032