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Interplanetary navigation along the low-thrust trajectory of BepiColombo

机译:沿BepiColombo低推力轨迹的行星际导航

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For BepiColombo's five-year journey into the inner solar system, a combination of low-thrust arcs and six flybys (one at Moon and Earth, two at Venus and two at Mercury) will be used to reach Mercury with low relative velocity. At arrival a gravitational capture approach is foreseen, in which the Sun perturbation is exploited to get weakly captured around Mercury for a number of orbits. This trajectory imposes severe constraints from a navigational point of view. Very precise navigation is required due to the low flyby altitudes planned for Venus (300 km) and Mercury (200 km) and the level of accuracy needed for the final arrival through the vicinity of the Sun-Mercury L1 point. Besides that, the solar plasma effect severely degrades the quality of the radiometric measurements near superior solar conjunctions, which are more frequent for missions to the inner solar system. Moreover, perturbations, as the ones introduced by momentum wheel desaturation burns, entry into safe modes or solar radiation pressure, must also be taken into account. Delta-differential one-way range measurements are found to be required in periods of poor orbit determination prior to some gravity assists. Nevertheless, if a safe mode is triggered at a critical moment that produces a change in velocity in an unfavourable direction, the mission could be jeopardised. To avoid that risk, an increase in the flyby altitude and possibly a partial or total redesign of the trajectory to avoid flybys near solar conjunctions are considered.
机译:对于BepiColombo进入内部太阳系的五年旅程,将使用低推力弧和六个飞越(一个在月球和地球,两个在金星,两个在水星)组合以相对低的速度到达水星。预计到来时将采用引力捕获方法,其中利用太阳摄动在水星的许多轨道上进行弱捕获。从航行的角度来看,该轨迹施加了严格的约束。由于计划在金星(300公里)和水星(200公里)处设置的低飞高度,以及通过太阳水星L1点最终到达所需的精度水平,因此需要非常精确的导航。除此之外,太阳等离子效应严重降低了优越太阳结附近的辐射测量质量,这对于执行内部太阳系任务更为频繁。此外,还必须考虑扰动,如动量轮去饱和引起的扰动燃烧,进入安全模式或太阳辐射压力。发现在某些重力辅助之前确定轨道的时间较差的时期需要进行Delta差动单程测量。但是,如果在某个关键时刻触发了安全模式,从而在不利的方向上产生了速度变化,则可能会危及任务。为了避免这种风险,考虑增加飞越高度,并可能对轨迹进行部分或全部重新设计,以避免在太阳交汇点附近发生飞越。

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