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MOEA based memetic algorithms for multi-objective satellite range scheduling problem

机译:基于MOAEA的多目标卫星范围调度问题的映射算法

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Satellite range scheduling plays a very important role in guaranteeing the normal operation and the real-time control of in-orbit satellites. Although there appears a stronger demand for multi-objective optimization of satellite monitoring departments, multiple scheduling criteria are rarely considered simultaneously. To address the multi-objective satellite range scheduling problem (MOSRSP), a general MOEA based memetic algorithm (MOEAMA) framework is proposed, which optimizes the failure rate of ground-satellite communication requests and the load-balance degree of remote-tracking antennas. Based on a novel decision model for MOSRSP, the conflict-resolution and load-balance operators and the tabu search metaheuristic are designed to implement the local search operations in the MOEA-MA. Different types of the MOEAs, including the domination-based MOEAs, decomposition-based MOEAs and metric-based MOEAs are adopted to implement the evolutionary operations in the MOEA-MA. The highlight of this paper is the effective application of the MOEA-MAs to practical scheduling problems, where the two most concerning objectives are well addressed. The MOEA-MAs that adopt five wellknown MOEAs are given and examined by the Benchmarks problems. Computational results indicate that the MOEA-MM outperform the original MOEAs in terms of the metrics of coverage, hypervolume and spacing, which show good performance and application prospect for the MOSRSP.
机译:卫星范围调度在保证正常运行和轨道内卫星的实时控制方面起着非常重要的作用。虽然对卫星监测部门的多目标优化的需求较强,但多次调度标准很少同时考虑。为了解决多目标卫星范围调度问题(MOSRSP),提出了一种基于MOEA的遗料算法(MOEMA)框架,其优化了地面卫星通信请求的故障率和遥控天线的负载平衡程度。基于MOSRSP的新型决策模型,旨在实现MOEA-MA中的本地搜索操作的冲突解决和负载平衡运算符和禁忌搜索成分型。采用不同类型的MOEAS,包括基于统治的MOEAS,基于分解的MOEAS和基于度量的MOEAS,用于在MOEA-MA中实施进化操作。本文的亮点是有效地将MOEA-MAS应用于实际调度问题,其中两个最多的目标都很好地解决。通过基准问题给出并检查采用五个Wellknown Moas的Moea-MAS。计算结果表明,MOEA-MM在覆盖范围,超级玻璃和间距的指标方面优于原来的MOES,这对MOSRSP表示了良好的性能和应用前景。

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