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Homotopy method for optimization of variable-specific-impulse low-thrust trajectories

机译:用于优化可变特定脉冲低推力轨迹的同型方法

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摘要

The homotopy method has been used as a useful tool in solving fuel-optimal trajectories with constant-specific-impulse low thrust. However, the specific impulse is often variable for many practical solar electric power-limited thrusters. This paper investigates the application of the homotopy method for optimization of variable-specific-impulse low-thrust trajectories. Difficulties arise when the two commonly-used homotopy functions are employed for trajectory optimization. The optimal power throttle level and the optimal specific impulse are coupled with the commonly-used quadratic and logarithmic homotopy functions. To overcome these difficulties, a modified logarithmic homotopy function is proposed to serve as a gateway for trajectory optimization, leading to decoupled expressions of both the optimal power throttle level and the optimal specific impulse. The homotopy method based on this homotopy function is proposed. Numerical simulations validate the feasibility and high efficiency of the proposed method.
机译:同型方法已被用作求解燃料最佳轨迹的有用工具,具有恒定特异性脉冲低推力。然而,对于许多实际太阳能电力有限推进器,特定脉冲通常是可变的。本文调查了同型方法优化可变特定脉冲低推力轨迹的应用。当使用两个常用的同型函数用于轨迹优化时出现困难。最佳功率节流阀和最佳特定脉冲与共同使用的二次和对数均相函数耦合。为了克服这些困难,提出了一种修改的对数偶联函数用作轨迹优化的网关,导致最佳功率节气门电平和最佳特定脉冲的解耦表达。提出了基于该同型函数的同型方法。数值模拟验证了所提出的方法的可行性和高效率。

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