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A Mixed Integer Linear Programming Model for Multi-Satellite Scheduling

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arxiv 1811.12114 v2 pith:QGNVO52H submitted 2018-11-29 math.OC cs.CE

A Mixed Integer Linear Programming Model for Multi-Satellite Scheduling

classification math.OC cs.CE
keywords modelproblemtimefeasibleintegerintervalslinearmixed
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We address the multi-satellite scheduling problem with limited observation capacities that arises from the need to observe a set of targets on the Earth's surface using imaging resources installed on a set of satellites. We define and analyze the conflict indicators of all available visible time windows of missions, as well as the feasible time intervals of resources. The problem is then formulated as a mixed integer linear programming model, in which constraints are derived from a careful analysis of the interdependency between feasible time intervals that are eligible for observations. We apply the proposed model to several different problem instances that reflect real-world situations. The computational results verify that our approach is effective for obtaining optimum solutions or solutions with a very good quality.

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Cited by 1 Pith paper

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  1. EOS-Bench: A Comprehensive Benchmark for Earth Observation Satellite Scheduling

    cs.NI 2026-04 conditional novelty 7.0

    EOS-Bench creates thousands of satellite scheduling test cases spanning small to large scales and evaluates multiple solver types across five performance metrics.