一种用于太阳能电力推进轨迹优化的光滑日食模型

Jonathan D. Aziz, D. Scheeres, Jeffrey Stuart Parker, J. Englander
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引用次数: 18

摘要

太阳能电力推进(SEP)是在航天任务中采用低推力推进的主要设计方案。航天器太阳能阵列为SEP系统供电,但在日食条件下会受到停电期的影响。在轨迹优化中必须考虑航天器可用功率的不连续性,但基于梯度的方法需要一个可微功率模型。本文提出了一个用逻辑函数平滑从日全食到日全食过渡的功率模型。用微分动态规划(一种基于二阶梯度的方法)计算示例轨迹。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Smoothed Eclipse Model for Solar Electric Propulsion Trajectory Optimization
Solar electric propulsion (SEP) is the dominant design option for employing low-thrust propulsion on a space mission. Spacecraft solar arrays power the SEP system but are subject to blackout periods during solar eclipse conditions. Discontinuity in power available to the spacecraft must be accounted for in trajectory optimization, but gradient-based methods require a differentiable power model. This work presents a power model that smooths the eclipse transition from total eclipse to total sunlight with a logistic function. Example trajectories are computed with differential dynamic programming, a second-order gradient-based method.
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