首页> 外文会议>International astronautical congress;IAC 2008 >NOT LOST IN COMMUNICATION: PLANETARY SURFACE COMMUNICATION AND NAVIGATION USING WIRELESS COTS TECHNOLOGIES
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NOT LOST IN COMMUNICATION: PLANETARY SURFACE COMMUNICATION AND NAVIGATION USING WIRELESS COTS TECHNOLOGIES

机译:通讯不失:使用无线胶辊技术进行行星表面通讯和导航

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This paper describes the results of an ESA led study to identify wireless technologies which could be used to provide networked communication and position location services for assets on a planetary surface. These wireless technologies are based on mature COTS standards such as WiMAX and UWB. Transport of data at rates from a few bits per second (low-power sensors) to megabits per second (real-time video) were considered at ranges from metres to tens of kilometres. A number of position determination methods were devised which operate as overlays at the media access level. These methods provide time-of-flight measurements which enable positioning with an accuracy of a few metres at the threshold of the communications system. We have performed extensive modelling of several selected systems at a number of potential landing sites on Mars. Network coverage and performance were modelled under realistic conditions using suitable Digital Terrain Models derived from Mars Express and Mars Global Surveyor datasets. The resulting coverage maps demonstrate that COTS based wireless OFDM systems will be a strong contender for providing communications and positioning services in a planetary environment. However, due to the practical constraints of mission scenarios, system deployment and safety considerations, the wireless system alone is insufficient for all positioning requirements and must be augmented by the use of next generation inertial guidance technologies.
机译:本文描述了一项由ESA领导的研究的结果,该研究确定了可用于为行星表面的资产提供网络通信和定位服务的无线技术。这些无线技术基于成熟的COTS标准,例如WiMAX和UWB。数据传输的速度范围从几米到几十公里不等,从每秒几位(低功率传感器)到每秒兆位(实时视频)。设计了许多位置确定方法,这些方法在媒体访问级别用作覆盖。这些方法提供了飞行时间测量,该测量能够在通信系统的阈值处以几米的精度进行定位。我们在火星上许多潜在的着陆点对几种选定的系统进行了广泛的建模。网络覆盖和性能是在现实条件下使用从Mars Express和Mars Global Surveyor数据集获得的合适数字地形模型建模的。最终的覆盖图表明,基于COTS的无线OFDM系统将是在行星环境中提供通信和定位服务的有力竞争者。但是,由于任务场景,系统部署和安全考虑的实际限制,仅无线系统不足以满足所有定位要求,必须通过使用下一代惯性制导技术来增强无线系统的能力。

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