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RACH in Self-Powered NB-IoT Networks: Energy Availability and Performance Evaluation

机译:在自动NB-IOT网络中的RACH:能量可用性和性能评估

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摘要

NarrowBand-Internet of Things (NB-IoT) is a new 3GPP radio access technology designed to provide better coverage for a massive number of low-throughput low-cost devices in delay-tolerant applications with low power consumption. To provide reliable connections with extended coverage, a repetition transmission scheme is introduced to NB-IoT during both Random Access CHannel (RACH) procedure and data transmission procedure. To avoid the difficulty in replacing the battery for IoT devices, the energy harvesting is considered as a promising solution to support energy sustainability in the NB-IoT network. In this work, we analyze RACH success probability in a self-powered NB-IoT network taking into account the repeated preamble transmissions and collisions, where each IoT device with data is active when its battery energy is sufficient to support the transmission. We model the temporal dynamics of the energy level as a birth-death process, derive the energy availability of each IoT device, and examine its dependence on the energy storage capacity and the repetition value. We show that in certain scenarios, the energy availability remains unchanged despite randomness in the energy harvesting. We also derive the exact expression for the RACH success probability of a randomly chosen IoT device under the derived energy availability, which is validated under different repetition values via simulations. We show that the repetition scheme can efficiently improve the RACH success probability in a light traffic scenario, but only slightly improves that performance with very inefficient channel resource utilization in a heavy traffic scenario.
机译:窄带互联网(NB-IOT)是一种新的3GPP无线电接入技术,旨在为具有低功耗的延迟耐受应用中的大量低通量低成本设备提供更好的覆盖范围。为了提供与扩展覆盖范围的可靠连接,在随机接入信道(RACH)过程和数据传输过程中,将重复传输方案引入NB-IOT。为避免难以更换电池的IOT设备,所以能量收集被认为是支持NB-IOT网络中的能量可持续性的有希望的解决方案。在这项工作中,考虑到重复的前导码传输和冲突,我们分析了在自动NB-10T网络中的RACH成功概率,其中当其电池能量足以支持传输时,具有数据的每个IOT设备处于活动状态。我们将能量水平的时间动态模拟作为出生死亡过程,导出每个物联网设备的能量可用性,并检查其对能量存储容量和重复值的依赖性。我们表明,在某些情况下,尽管能量收集中随机性,但能量可用性保持不变。我们还在导出的能量可用性下导出了随机选择的IOT设备的RACH成功概率的确切表达,这通过模拟在不同的重复值下验证。我们表明重复方案可以有效地提高轻微交通方案中的RACH成功概率,但仅略微改善了繁重的交通方案中具有非常低效的信道资源利用率的性能。

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