用于确定小空间飞行器位置的模块结构图

E. Titenko, A. Sizov, A. Shevtsov, Ekaterina N. Schitova, E. V. Skripkina
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引用次数: 0

摘要

的相关性。已知的确定飞机坐标的模型、算法和技术解决办法部分适用于确定小型航天器的位置,因为后者没有自己的确定和发送坐标的手段。这种限制不允许对小型航天器进行连续控制,并降低了其功能。建议使用正在积极发展的自动相关监视广播系统,安装在飞机上并允许传输其坐标,包括向小型航天器传输。这种飞行器被认为是地球空域中一种可移动的参考物体。该研究提出并解决了一个改进的三角测量问题——通过参考运动物体(飞行器)的坐标确定小型航天器的坐标。目的。开发一个模块的框图,该模块使用数学模型来处理从发送自身坐标的参考飞行器接收到的信号,从而计算移动航天器的坐标。方法。在本文的框架内,考虑了接收机和发射机之间信息传输的主要物理(多普勒效应)和几何关系以及硬件和软件解决方案,设计了小型航天器上信息发射机的坐标处理。所获得的结果使确定小型航天器的位置成为可能。坐标确定模块的总体框图具有并行组织,可用于高性能计算系统。在数学模型的基础上,给出了确定设备查找区域的算法和坐标处理模块的框图,其特点是存在专门的并行搜索单元。在参考数据上对该算法进行建模,结果表明,通过解决改进后的问题,该算法在确定车辆面积方面具有所需的精度。得到的计算域方差值表明了该方法的有效性,并证明了小航天器坐标确定问题的硬件解决方法。结论。基于ADS-B信号确定小型航天器位置的模块框图是比GPS最紧凑和能量更便宜的解决方案,它允许使用接收器计算小型航天器的坐标,电池的消耗仅用于接收和处理数据。与本文提出的小航天器的接收-处理和坐标计算方案相比,本文采用了CubeSat标准的多颗纳米卫星现有的类似解决方案,除了处理算法和接收路径外,还使用了发射设备,该设备的能耗是本文位置确定模块ICA结构图所示设备的许多倍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
STRUCTURAL DIAGRAM OF THE MODULE FOR DETERMINING THE LOCATION OF SMALL SPACE VEHICLES
Relevance. Known models, algorithms and technical solutions for determining the coordinates of aircraft are partially suitable for determining the location of small spacecraft, since the latter do not have their own means of determining and transmitting coordinates. This limitation does not allow continuous control of a small spacecraft and reduces its functionality. It is proposed to use the actively developing system of automatic dependent surveillance-broadcasting, installed on aircraft and allowing transmission of their coordinates, including to small spacecraft. Such aircraft are considered to be a kind of mobile reference objects in the airspace of the Earth. The study poses and solves a modified triangulation problem – determining the coordinates of a small spacecraft by the coordinates of reference moving objects (aircraft). Purpose. Development of a block diagram of a module that calculates the coordinates of a mobile spacecraft using a mathematical model for processing signals received from reference aircraft transmitting their own coordinates. Methods. Within the framework of the article, the main physical (Doppler effect) and geometric relationships of message transmission between receivers and transmitters and hardware and software solutions are considered, designed to obtain the processing of coordinates of message transmitters on board a small spacecraft. The results obtained make it possible to determine the location of the small spacecraft. The general block diagram of the coordinate determination module has a parallel organization and can be used in high-performance computing systems. On the basis of a mathematical model, an algorithm for determining the area of finding the apparatus and a block diagram of the coordinate processing module are obtained, characterized by the presence of a specialized parallel search unit. Modeling the algorithm on the reference data has shown the required accuracy in determining the area of the vehicle as a result of solving the modified problem. The obtained values of the variance of the computational domain indicate the efficiency of this approach and justify the hardware solution of the problem of determining the coordinates of a small spacecraft. Conclusion. The block diagram of the module for determining the position of the small spacecraft based on the ADS-B signals is the most compact and energetically less expensive solution than the GPS, which allows calculating the coordinates of the small spacecraft using a receiver, the consumption of the battery is only for receiving and processing data. In contrast to the presented scheme for receiving-processing and calculating the coordinates of the small spacecraft, existing similar solutions in a number of nanosatellites of the CubeSat standard are used, in addition to the processing algorithm and the receiving path, also transmitting equipment, which is many times more energy-intensive than the equipment presented in the form of a structural diagram of the position determination module ICA, in this article.
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