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Potential candidates for new SBAS signals

机译:SBAS新信号的潜在候选者

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摘要

Satellite-Based Augmentation Systems (SBAS) provide single-frequency services for aeronautical users by broadcasting corrections and integrity information on L1 frequency. Future dual-frequency services for aeronautical users will be broadcast on L5-I/E5a-I frequency. New services that could be potentially provided by SBAS to non-aeronautical community are currently being investigated. These services may require higher data rates that challenge current SBAS signal definitions. Considering there is, at this time, no standardized SBAS signal neither on L5/E5a-Q component nor on E5b frequency band, an opportunity to evaluate new signal candidates is identified. In this paper, several candidates are proposed and compared with a baseline candidate. The baseline candidate is the current signal structure of SBAS signals, L1-I and L5-I/E5a-I. The comparison is made in terms of data rate, latency, data demodulation performance and receiver complexity as number of real additions and multiplications. It is observed that it is possible to increase the data rate and to reduce the latency without degrading the data demodulation threshold and with a reasonable complexity increase. Moreover, a compatibility analysis has been conducted which shows an impact smaller than 0.1dB of C/No degradation in any signal processing operation of any L5/E5a frequency band signal.
机译:卫星增强系统(SBAS)通过在L1频率上广播校正和完整性信息为航空用户提供单频服务。面向航空用户的未来双频服务将在L5-I / E5a-I频率上广播。目前正在研究SBAS可能向非航空界提供的新服务。这些服务可能需要更高的数据速率,从而挑战当前的SBAS信号定义。考虑到此时,在L5 / E5a-Q分量和E5b频带上都没有标准化的SBAS信号,因此确定了评估新信号候选者的机会。在本文中,提出了几种候选方案,并将它们与基准候选方案进行了比较。基线候选者是SBAS信号L1-I和L5-I / E5a-I的当前信号结构。进行比较的方式包括数据速率,等待时间,数据解调性能和接收器复杂性,以实际加法和乘法的次数为单位。观察到可以在不降低数据解调阈值的情况下并且在合理的复杂度增加的情况下增加数据速率并减少等待时间。此外,已经进行了兼容性分析,该分析表明在任何L5 / E5a频带信号的任何信号处理操作中,影响均小于0.1dB的C / No降级。

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