Near-Earth Asteroid Surveillance Constellation in the Sun-Venus Three-Body System

Xingyu Zhou, Xiangyu Li, Zhuoxi Huo, L. Meng, Jiangchuan Huang
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Abstract

The threat of potential hazardous near-Earth asteroid (PHA) impact on Earth is increasingly attracting public attention. Monitoring and early warning of those PHAs are the premise of planetary defense. In this paper, we proposed a novel concept of surveillance constellation of heterogeneous wide-field near-Earth asteroid (NEA) surveyors (CROWN), in which six space-based surveyors are loosely deployed in Venus-like orbits to detect the NEAs along the direction of the sunlight. First, the concept and overall design of the NEA surveillance constellation are discussed. Second, the transfer and deployment trajectory of the surveyors are investigated based on the Sun-Venus three-body system. The Sun-Venus libration orbit is taken as the parking orbit, and its stable invariant manifolds are used to reduce the deployment fuel consumption. Next, the detection performance of the CROWN was evaluated considering constraints of apparent visual magnitude and field of view. The NEA orbit determination (OD) using the CROWN was studied and verified. Simulation results show that the CROWN can be deployed with a total velocity increment of approximately 300 m/s. During the 5 years of observation, 99.8% of PHAs can be detected and the OD precision is better than a single-surveyor system. This paper can provide a reference for the construction of future asteroid defense system.
日-金星三体系统中的近地小行星监视星座
近地小行星撞击地球的潜在危险日益引起人们的关注。对这些pha的监测和预警是地球防御的前提。在本文中,我们提出了异质宽视场近地小行星(NEA)测量者监视星座(CROWN)的新概念,其中6个天基测量者松散地部署在类金星轨道上,沿阳光方向探测近地小行星。首先,讨论了NEA监视星座的概念和总体设计。其次,基于太阳-金星三体系统,研究了探测器的转移和部署轨迹。采用日-金星轨道作为停车轨道,利用其稳定不变流形来降低展开燃料消耗。其次,考虑视星等和视场的约束,对CROWN的检测性能进行了评价。研究并验证了利用CROWN确定NEA轨道(OD)的方法。仿真结果表明,在总速度增量约为300 m/s的情况下,CROWN可以部署。在5年的观测中,PHAs的检出率达到99.8%,外径精度优于单测量员系统。本文可为今后小行星防御系统的建设提供参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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