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首页> 外文期刊>Internet of Things Journal, IEEE >An Efficient Spectrum Utilization Scheme for Energy-Constrained IoT Devices in Cellular Networks
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An Efficient Spectrum Utilization Scheme for Energy-Constrained IoT Devices in Cellular Networks

机译:用于蜂窝网络中的能量受限IOT设备的有效频谱利用方案

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The cellular Internet of Things envisions the connection of billions of devices with the Internet through cellular networks. These Internet-of-Things Devices (IoDs) are normally energy constrained. In order to provide network services to these energy-constrained IoDs, this article proposes a cellular architecture, whereby IoDs utilize resources of the cellular network for energy harvesting and information transmission. The radio resources of the cellular network are divided by time and frequency, and each time-frequency block is called a cellular resource block (CRB). At the beginning of each time slot, IoDs select CRBs randomly. IoDs receive the control information from the base station (BS) and extract the resource allocation information about the selected CRB. When selected CRBs are busy, IoDs harvest energy from the radio-frequency signals of the BS, and then they use that stored energy to transmit their information to the cluster head (CH) when selected CRBs are idle. In order to obtain the average harvested energy, the random distance between cellular BS and randomly deployed IoD has been statistically calculated. Using the finite-state Markov chain model, the transmission probability of each IoD is calculated. Analytical expressions for the collision probability and average throughput of IoDs are also derived. To verify the derived analytical expressions, system-level simulations are carried out, and it is shown that the analytical results match the simulation results. Moreover, the overall performance of the considered architecture is studied for different system parameters.
机译:蜂窝内容互联网设想通过蜂窝网络与互联网的数十亿设备的连接。这些物联网设备(IOD)通常是能量约束。为了向这些能量受限IOD提供网络服务,本文提出了一种蜂窝架构,由此IOD利用蜂窝网络的资源进行能量收集和信息传输。蜂窝网络的无线电资源被时间和频率除以时间和频率,并且每个时频块称为蜂窝资源块(CRB)。在每个时隙开始时,IOD随机选择CRB。 IOD从基站(BS)接收控制信息,并提取关于所选CRB的资源分配信息。当所选CRB繁忙时,IOD从BS的射频信号收获能量,然后它们使用存储的能量在所选CRB空闲时将其信息传输到簇头(CH)。为了获得平均收获的能量,蜂窝BS与随机部署的IOD之间的随机距离已经过统计地计算。使用有限状态马尔可夫链模型,计算每个IOD的传输概率。还导出了用于碰撞概率和IOD平均吞吐量的分析表达。为了验证导出的分析表达式,执行系统级模拟,并显示分析结果与模拟结果匹配。此外,针对不同的系统参数研究了所考虑的架构的整体性能。

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