E-SSA卫星信息返回信道:性能分析和现场试验结果

T. Heyn, Peter Nagel, B. Niemann, A. Recchia, F. Collard, R. Hermenier, M. Marchitti, M. Andrenacci, Gaetano Mendola
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引用次数: 3

摘要

一个将交互式卫星服务与其他通信渠道相结合的开放式ITS平台正在SafeTRIP项目的现场试验中开发和评估。该项目的一个重要目标是为陆地移动卫星上的消息返回信道设计一种新的波形并进行现场验证。整个系统架构最近被ETSI标准化,命名为S-MIM (s波段移动交互多媒体)。该标准第3部分中描述的消息传递协议基于增强型扩频Aloha (E-SSA)。它的主要优势在于发射器所需的低功率,这将允许重复使用现成的功率放大器和低成本的全向天线。本文将全面总结以前的E-SSA性能分析,包括模拟和使用E-SSA波形的首次现场试验结果。所提出的结果来自在德国进行的静态和移动现场试验,试验采用全功能E-SSA调制器和解调器原型以及EUTELSAT10A卫星。给出了带全向天线的E-SSA演示器在视距(LOS)条件下的静态和移动性能。对不同终端功率水平下卫星传输的分组误码率进行了实测,验证了单端和多端同时传输链路预算的理论计算。在试验中测量了在移动条件下由于传输信道的衰落效应而引起的退化。3 dB。在试验设置的多用户场景中,最终所需的发射机功率仅为-3 dBW,以在移动条件下达到高QoS。该值证实了E-SSA波形对大众市场交互式移动服务的适用性。
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E-SSA satellite messaging return channel: Performance analysis and field trials results
An open ITS platform combining interactive satellite services with other communication channels is being developed and evaluated in field trials within the SafeTRIP project. Prototyping and in-field validation of a novel waveform for messaging return channel over satellite for land mobile is an important objective of the project. The overall system architecture has recently been standardized by ETSI under the name of S-MIM (S-band Mobile Interactive Multimedia). The messaging protocol, described in the Part 3 of the standard, is based on the Enhanced Spread Spectrum Aloha (E-SSA). Its main asset resides in the low power required at the transmitter, which will allow the reuse of off-the-shelf power amplifiers and low-cost omnidirectional antennas. This paper will present a comprehensive summary of previous E-SSA performance analysis from simulations and the first field trials results using the E-SSA waveform. The presented results have been derived from static and mobile field trials carried out in Germany with fully functional E-SSA modulator and demodulator prototypes and the EUTELSAT10A satellite. Results for the static and mobile performance of the E-SSA demonstrator with an omni-directional antenna under Line-ofsight (LOS) conditions are presented. The measured Packet Error Rates of transmissions via satellite at different terminal power levels confirm the theoretical link budget calculations for single and multiple simultaneously transmitting terminals. The degradation due to fading effects of the transmission channel under mobile conditions has been measured during the trials to approx. 3 dB. The resulting overall required transmitter power in the multi-user scenario of the trials setup has been only -3 dBW to reach a high QoS under mobile conditions. This value confirms the suitability of the E-SSA waveform for interactive mobile services for the mass market.
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