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Gaussian Pseudospectral Longitudinal Trajectory Optimization Algorithm of a Solar Powered Communication/Remote-Sensing UAV

机译:高斯假谱纵向轨迹纵向轨迹优化算法的太阳能通信/遥感UAV

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Existing empirical rules-based flight scheme of the solar powered communication/remote-sensing UAV is difficult to meet all the constraints. In order to get a more reasonable flight strategy, the flight path must be optimized globally. The design of solar energy flow track is defined and analyzed mathematically. The track optimization of the solar UAV is defined as a classical control optimization problem. The optimal trajectory of solar UAV is designed and verified by Gaussian pseudospectral method. Multiple simulation conclusions show that the optimized trajectory can meet the set constraints well.
机译:基于现有的基于实证规则的太阳能通信/遥感UAV的飞行方案很难满足所有约束。 为了获得更合理的飞行策略,飞行路径必须全局优化。 在数学上定义和分析太阳能流动轨道的设计。 太阳能UAV的轨道优化被定义为经典控制优化问题。 通过高斯假谱法设计和验证了太阳能UAV的最佳轨迹。 多种仿真结论表明优化的轨迹可以很好地满足集合约束。

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