Shanghai Institute of Microsystem and Information Technology, Chinese Academy of Sciences, Shanghai 200050, China.
University of Chinese Academy of Sciences, Beijing 100049, China.
Sensors (Basel). 2018 May 12;18(5):1537. doi: 10.3390/s18051537.
To achieve launch-on-demand for Operationally Responsive Space (ORS) missions, in this article, an intra-satellite wireless network (ISWN) is presented. It provides a wireless and modularized scheme for intra-spacecraft sensing and data buses. By removing the wired data bus, the commercial off-the-shelf (COTS) based wireless modular architecture will reduce both the volume and weight of the satellite platform, thus achieving rapid design and cost savings in development and launching. Based on the on-orbit data demand analysis, a hybrid time division multiple access/carrier sense multiple access (TDMA/CSMA) protocol is proposed. It includes an improved clear channel assessment (CCA) mechanism and a traffic adaptive slot allocation method. To analyze the access process, a Markov model is constructed. Then a detailed calculation is given in which the unsaturated cases are considered. Through simulations, the proposed protocol is proved to commendably satisfy the demands and performs better than existing schemes. It helps to build a full-wireless satellite instead of the current wired ones, and will contribute to provide dynamic space capabilities for ORS missions.
为实现作战响应空间(ORS)任务的按需发射,本文提出了一种星内无线网络(ISWN)。它为星内传感和数据总线提供了一种无线和模块化的方案。通过去除有线数据总线,基于商用现货(COTS)的无线模块化架构将减少卫星平台的体积和重量,从而在开发和发射过程中实现快速设计和成本节约。基于在轨数据需求分析,提出了一种混合时分多址/载波侦听多址(TDMA/CSMA)协议。它包括改进的清晰信道评估(CCA)机制和流量自适应时隙分配方法。为了分析接入过程,构建了一个马尔可夫模型。然后给出了详细的计算,其中考虑了不饱和情况。通过仿真,证明所提出的协议能够很好地满足需求,并优于现有方案。它有助于构建全无线卫星,而不是当前的有线卫星,并将有助于为 ORS 任务提供动态空间能力。