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Energy-Efficient Random Access for LEO Satellite-Assisted 6G Internet of Remote Things

机译:LEO卫星辅助6G遥控器互联网的节能随机访问

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摘要

Satellite communication system is expected to play a vital role for realizing various remote Internet-of-Things (IoT) applications in sixth-generation vision. Due to unique characteristics of satellite environment, one of the main challenges in this system is to accommodate massive random access (RA) requests of IoT devices while minimizing their energy consumptions. In this article, we focus on the reliable design and detection of RA preamble to effectively enhance the access efficiency in high-dynamic low-earth-orbit (LEO) scenarios. To avoid additional signaling overhead and detection process, a long preamble sequence is constructed by concatenating the conjugated and circularly shifted replicas of a single root Zadoff-Chu (ZC) sequence in RA procedure. Moreover, we propose a novel impulse-like timing metric based on length-alterable differential cross-correlation (LDCC), that is immune to carrier frequency offset (CFO) and capable of mitigating the impact of noise on timing estimation. Statistical analysis of the proposed metric reveals that increasing correlation length can obviously promote the output signal-to-noise power ratio, and the first-path detection threshold is independent of noise statistics. Simulation results in different LEO scenarios validate the robustness of the proposed method to severe channel distortion, and show that our method can achieve significant performance enhancement in terms of timing estimation accuracy, success probability of first access, and mean normalized access energy, compared with the existing RA methods.
机译:预计卫星通信系统将在第六代视觉中实现各种远程互联网(物联网)应用来发挥重要作用。由于卫星环境的独特特征,该系统的主要挑战之一是适应IOT设备的大规模随机访问(RA)请求,同时最小化其能量消耗。在本文中,我们专注于RA前导码的可靠设计和检测,以有效提高高动态低地轨道(LEO)情景中的访问效率。为了避免额外的信令开销和检测过程,通过在RA过程中通过连接单根Zadoff-Chu(ZC)序列的共轭和圆周移位的复制来构建长前导序列。此外,我们提出了一种基于长度可变的差分互相关(LDCC)的新型脉冲定时度量,其免受载波频率偏移(CFO),并且能够减轻噪声对定时估计的影响。提出的度量标准的统计分析表明,增加的相关长度可以明显地促进输出信噪比功率比,并且第一路径检测阈值与噪声统计无关。不同LEO场景的仿真结果验证了所提出的方法对严重信道失真的鲁棒性,并表明我们的方法可以在定时估计准确度,第一次访问的成功概率方面实现显着的性能增强,而且指标归一化进入能量相比,相比现有的RA方法。

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