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On Preamble-based Grant-Free Transmission in Low Power Wide Area (LPWA) IoT Networks

机译:低功率广域网(LPWA)物联网网络中基于前同步码的免授权传输

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Grant-free (GF) access is one of the prominent access strategies being considered for massive machine type communication (mMTC) facilitating the low power wide area (LPWA) Internet of things (IoT). GF access in the uplink typically uses a preamble followed by data transmissions. Building GF systems ensuring a high success probability for user access while utilizing a limited number of preambles is a challenge. In this work, a preamble-based GF IoT system is considered, where the total number of users in the system correspond to two categories - (i) fixed and (ii) random (modelled using a Poisson distribution). Analytical expressions are derived for the number of preambles required for GF access in each of the categories, such that the user transmissions are successful with high probability. It is shown that the analytical results match with the simulation results. Furthermore, an approach to choose the number of preambles based on the probability of success of at least all but two users is proposed, which results in a significant reduction in the number of preambles.
机译:无授权(GF)访问是大规模机器类型通信(mMTC)正在考虑采用的重要访问策略之一,以促进低功耗广域(LPWA)物联网(IoT)。上行链路中的GF访问通常使用前导码,然后进行数据传输。建立GF系统以确保用户访问成功率很高,同时利用有限数量的前导码是一个挑战。在这项工作中,考虑了基于前同步码的GF IoT系统,其中系统中的用户总数对应两类-(i)固定和(ii)随机(使用Poisson分布建模)。对于每个类别中的GF访问所需的前同步码的数量,导出了解析表达式,使得用户传输成功的可能性很高。结果表明,分析结果与仿真结果吻合。此外,提出了一种基于至少两个用户之外的所有用户的成功概率来选择前同步码的数量的方法,这导致前同步码的数量的显着减少。

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