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Optimal Interplanetary Orbital Transfers via Electrical Engines

机译:通过电动发动机的最佳行星际轨道转移

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The Hohmann transfer theory, developed in the 19th century, is the kernel of orbital transfer with minimum propellant mass by means of chemical engines. The success of the Deep Space 1 spacecraft has paved the way toward using advanced electrical engines in space. While chemical engines are characterized by high thrust and low specific impulse, electrical engines are characterized by low thrust and hight specific impulse. In this paper, we focus on four issues of optimal interplanetary transfer for a spacecraft powered by an electrical engine controlled via the thrust direction and thrust setting: (a) trajectories of compromise between transfer time and propellant mass, (b) trajectories of minimum time, (c) trajectories of minimum propellant mass, and (d) relations with the Hohmann transfer trajectory. The resulting fundamental properties are as follows:
机译:霍曼转移理论是19世纪发展起来的,它是通过化学发动机以最小推进剂质量进行轨道转移的核心。 “深空一号”航天器的成功为在太空中使用先进的电动引擎铺平了道路。虽然化学发动机的特征在于高推力和低的比冲,而电动发动机的特征在于低推力和高的比冲。在本文中,我们关注由推力方向和推力设置控制的,由电动发动机驱动的航天器的最佳行星际传递的四个问题:(a)传递时间与推进剂质量之间折衷的轨迹,(b)最短时间的轨迹,(c)最小推进剂质量的轨迹,以及(d)与霍曼转移轨迹的关系。产生的基本属性如下:

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