Optimized waveform for energy efficient ranging

E. Staudinger, M. Walter, A. Dammann
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Abstract

Mobile communication terminals exploit existing reference signal structures for propagation delay based positioning. However, the used waveforms are not optimized for energy efficiency and improved ranging performance for positioning. Recently, a parametric waveform with adaptable power spectral density has been proposed in the context of 5G, and has shown an improved ranging performance. In this paper, we investigate the energy reduction of a ranging signal for a targeted ranging performance by adjusting the parametric waveform. We focus on the newly opened 28 GHz frequency band offering 850 MHz of contiguous bandwidth in the United States. Based on derived Ziv-Zakai lower bounds and a mmWave path loss model with shadow fading we determine the optimal waveform parameter. Our results show a transmit power reduction of 4.77 dB compared to existing reference signal structures. Furthermore, we show a link budget example in the context of ITS positioning.
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优化的波形节能测距
移动通信终端利用现有的参考信号结构进行基于传播延迟的定位。然而,使用的波形没有优化能源效率和改进定位的测距性能。最近,在5G背景下提出了一种具有自适应功率谱密度的参数波形,并显示出改进的测距性能。在本文中,我们研究了通过调整参数波形来降低测距信号的能量以达到目标测距性能。我们专注于新开放的28 GHz频段,在美国提供850 MHz的连续带宽。基于导出的zv - zakai下界和带阴影衰落的毫米波路径损耗模型,确定了最优波形参数。我们的结果表明,与现有的参考信号结构相比,发射功率降低了4.77 dB。此外,我们还展示了ITS定位背景下的链接预算示例。
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