A celestial alignment between Neptune, Uranus, and Jupiter will occur in the early 2030s, allowing a slingshot around Jupiter to gain enough momentum to achieve planetary flyover capability around the two ice giants. The launch of the uranian probe for the departure windows of the NUIP mission is between January 2030 and January 2035, and the duration of the mission is between six and ten years, and the launch of the Nepta probe for the departure windows of the NUIP mission is between February 2031 and April 2032 and the duration of the mission is between seven and ten years. To get the most out of alignment, deep learning methods are expected to play a critical role in autonomous and intelligent spatial guidance problems. This would reduce travel time, hence mission time, and allow the spacecraft to perform well for the life of its sophisticated instruments and power systems up to fifteen years. This article proposes a design of deep neural networks, namely convolutional neural networks and recurrent neural networks, capable of predicting optimal control actions and image classification during the mission. Nepta-Uranian interplanetary mission, using only raw images taken by optimal onboard cameras. It also describes the unique requirements and constraints of the NUIP mission, which led to the design of the communications system for the Nepta-Uranian spacecraft. The proposed mission is expected to collect telemetry data on Uranus and Neptune while performing the flyovers and transmit the obtained data to Earth for further analysis. The advanced range of spectrometers and particle detectors available would allow better quantification of the ice giant's properties.
翻译:海王星、天王星和木星之间的天体结合将在2030年代初期发生,使木星周围的弹弓获得足够的动力,以在两个冰巨星周围实现行星飞行能力。在2030年1月至2035年1月之间为UNIP飞行任务的出发窗口发射乌兰探针,任务期限为6至10年,而Nepta探针将在2031年2月至2032年4月之间发射,而NUIP飞行任务的离开窗口的奈普塔探针将在2032年2月至2032年4月之间发射,任务期限为7至10年之间。为了实现最大调整,预计深层学习方法将在自主和智能空间指导问题中发挥关键作用。这将缩短旅行时间,从而缩短飞行任务的时间,使航天器在其精密的仪器和动力系统寿命中运行到15年。本文章建议设计一个深层神经网络,即革命神经网络和经常性神经网络,能够预测飞行任务期间的最佳控制行动和图像分类。为了在飞行任务期间实现最佳控制行动和图像分类,内塔星际飞行任务,只能使用原始图像图图像,在通过由最精确的图像绘制的图像图像像像图像分析中进行飞行任务中进行分析,同时进行飞行任务的飞行任务中将进行最精确图像分析,同时进行最精确的图像分析,该飞行任务的飞行飞行飞行飞行,并预地标定的预计的天平流数据系统设计到天平流数据系统设计到天平地标值系统,并进行最精确的天平流系统,用于天平流的天平流系统设计系统,用于天平面的天平面的天平面的天平流的天平压系统设计。它。它。