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Power efficient uplink scheduling in SC-FDMA: benchmarking by column generation
Abstract We study resource allocation in cellular systems and consider the problem of finding a power efficient scheduling in an uplink single carrier frequency division multiple access system. Due to the discrete nature of this problem and its computational difficulty, particularly in a real-time setting, the use of suboptimal algorithms is common practice. We aim at an effective way of gauging the performance of suboptimal algorithms by finding tight bounds on the global optimum. Toward this end, we first provide a basic integer linear programming formulation. Then we propose a significantly stronger column-oriented formulation and a corresponding column generation method, as well as an enhanced column generation scheme. The latter extends the first scheme through the inclusion of a stabilization technique, an approximate column generation principle, and a tailored heuristic that is embedded in the column generation scheme to find high-quality though not necessarily global optimal solutions. The computational evaluation demonstrates that compared with a poor performance by the integer linear programming formulation, the column generation method can produce near-optimal schedules that enable a sharp bounding interval. The enhanced column generation method significantly sharpens the bounding interval. Hence the column generation approach serves well for the purpose of benchmarking results for large-scale instances.
Power efficient uplink scheduling in SC-FDMA: benchmarking by column generation
Abstract We study resource allocation in cellular systems and consider the problem of finding a power efficient scheduling in an uplink single carrier frequency division multiple access system. Due to the discrete nature of this problem and its computational difficulty, particularly in a real-time setting, the use of suboptimal algorithms is common practice. We aim at an effective way of gauging the performance of suboptimal algorithms by finding tight bounds on the global optimum. Toward this end, we first provide a basic integer linear programming formulation. Then we propose a significantly stronger column-oriented formulation and a corresponding column generation method, as well as an enhanced column generation scheme. The latter extends the first scheme through the inclusion of a stabilization technique, an approximate column generation principle, and a tailored heuristic that is embedded in the column generation scheme to find high-quality though not necessarily global optimal solutions. The computational evaluation demonstrates that compared with a poor performance by the integer linear programming formulation, the column generation method can produce near-optimal schedules that enable a sharp bounding interval. The enhanced column generation method significantly sharpens the bounding interval. Hence the column generation approach serves well for the purpose of benchmarking results for large-scale instances.
Power efficient uplink scheduling in SC-FDMA: benchmarking by column generation
Zhao, Yixin (Autor:in) / Larsson, Torbjörn (Autor:in) / Yuan, Di (Autor:in) / Rönnberg, Elina (Autor:in) / Lei, Lei (Autor:in)
2015
Aufsatz (Zeitschrift)
Englisch
Power efficient uplink scheduling in SC-FDMA: benchmarking by column generation
Springer Verlag | 2015
|Correction to: Power efficient uplink scheduling in SC-FDMA: benchmarking by column generation
Online Contents | 2019
|Correction to: Power efficient uplink scheduling in SC-FDMA: benchmarking by column generation
Springer Verlag | 2019
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