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Implementation and performance evaluation of cellular NB-IoT OTDOA positioning

机译:蜂窝NB-IoT OTDOA定位的实现和性能评估

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This contribution describes the first implementation of an integrated modem supporting NB-IoT OTDOA positioning. The integration of a dedicated hardware accelerator provides the necessary processing power for time-domain cross-correlations of OFDM signals and enables successful position fixes at highly negative SINR. The presented HW/SW partitioning scheme allows to minimize the HW overhead, keeping it below 2% of the System on Chip (SoC)'s area, while allowing for flexible algorithms taking advantage of the integrated processor system. Measurements with fabricated silicon in a laboratory environment prove that 3GPP accuracy requirements are easily met. The achieved Root Mean Square (RMS) positioning accuracy of 48.5 m and 65.5 m in normal and extended coverage, respectively, shows the potential of NB-IoT positioning as a complement to GNSS. Potential use cases are indoor applications and the improvement of cyber-physical systems' security by adding redundancy to their positioning capabilities.
机译:此文稿描述了支持NB-IoT OTDOA定位的集成调制解调器的首次实现。专用硬件加速器的集成为OFDM信号的时域互相关提供了必要的处理能力,并能够在高度负SINR的情况下成功定位。提出的硬件/软件分区方案可以最大程度地减少硬件开销,使其低于片上系统(SoC)面积的2%,同时允许利用集成处理器系统的灵活算法。在实验室环境中使用制造的硅进行的测量证明,可以轻松满足3GPP精度要求。正常和扩展覆盖范围内分别达到48.5 m和65.5 m的均方根(RMS)定位精度,显示了NB-IoT定位作为GNSS补充的潜力。潜在的用例是室内应用,以及通过增加其定位功能的冗余性来提高网络物理系统的安全性。

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