A two-phase procedure for allotting geostationary orbital locations to communications satellites

We consider the problem of allotting locations in the geostationary orbit to communication satellites, subject to angle of elevation and electromagnetic interference constraints. An optimization framework is used as a means of finding feasible allotment plans. Specifically, we present a two‐phase so...

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Veröffentlicht in:Naval research logistics 1991-12, Vol.38 (6), p.779-797
Hauptverfasser: Reilly, Charles H., Mount-Campbell, Clark A., Mata, Fernando, Walton, Eric K., Aebker, Eric A., Levis, Curt A.
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Sprache:eng
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Zusammenfassung:We consider the problem of allotting locations in the geostationary orbit to communication satellites, subject to angle of elevation and electromagnetic interference constraints. An optimization framework is used as a means of finding feasible allotment plans. Specifically, we present a two‐phase solution procedure for the satellite location problem (SLP). The objective in SLP is to allot geostationary orbital locations to satellites so as to minimize the sum of the absolute differences between the locations prescribed for the satellites and corresponding specified desired locations. We describe two heuristics, an ordering procedure and a k‐permutation algorithm, that are used in tandem to find solutions to SLP. Solutions to a worldwide example problem with 183 satellites serving 208 service areas are summarized.
ISSN:0894-069X
1520-6750
DOI:10.1002/nav.3800380601