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基于LTE-M的物联网传感平台中用于节能通信的自适应MCS选择与资源规划

Adaptive MCS selection and resource planning for energy-efficient communication in LTE-M based IoT sensing platform.

作者信息

Dao Nhu-Ngoc, Park Minho, Kim Joongheon, Cho Sungrae

机构信息

School of Computer Science and Engineering, Chung-Ang University, Seoul, South Korea.

Department of Information Communication, Materials, and Chemistry Convergence Technology, Soongsil University, Seoul, South Korea.

出版信息

PLoS One. 2017 Aug 10;12(8):e0182527. doi: 10.1371/journal.pone.0182527. eCollection 2017.

Abstract

As an important part of IoTization trends, wireless sensing technologies have been involved in many fields of human life. In cellular network evolution, the long term evolution advanced (LTE-A) networks including machine-type communication (MTC) features (named LTE-M) provide a promising infrastructure for a proliferation of Internet of things (IoT) sensing platform. However, LTE-M may not be optimally exploited for directly supporting such low-data-rate devices in terms of energy efficiency since it depends on core technologies of LTE that are originally designed for high-data-rate services. Focusing on this circumstance, we propose a novel adaptive modulation and coding selection (AMCS) algorithm to address the energy consumption problem in the LTE-M based IoT-sensing platform. The proposed algorithm determines the optimal pair of MCS and the number of primary resource blocks (#PRBs), at which the transport block size is sufficient to packetize the sensing data within the minimum transmit power. In addition, a quantity-oriented resource planning (QORP) technique that utilizes these optimal MCS levels as main criteria for spectrum allocation has been proposed for better adapting to the sensing node requirements. The simulation results reveal that the proposed approach significantly reduces the energy consumption of IoT sensing nodes and #PRBs up to 23.09% and 25.98%, respectively.

摘要

作为物联网化趋势的重要组成部分,无线传感技术已涉足人类生活的诸多领域。在蜂窝网络演进中,包括机器类型通信(MTC)特性的长期演进高级(LTE-A)网络(称为LTE-M)为物联网(IoT)传感平台的普及提供了一个有前景的基础设施。然而,由于LTE-M依赖于最初为高数据速率服务设计的LTE核心技术,在能源效率方面可能无法得到最优利用来直接支持此类低数据速率设备。针对这种情况,我们提出了一种新颖的自适应调制和编码选择(AMCS)算法,以解决基于LTE-M的物联网传感平台中的能耗问题。所提出的算法确定MCS与主资源块数量(#PRBs)的最优组合,在该组合下传输块大小足以在最小发射功率内对传感数据进行分组。此外,还提出了一种以数量为导向的资源规划(QORP)技术,该技术将这些最优MCS级别用作频谱分配的主要标准,以便更好地适应传感节点的要求。仿真结果表明,所提出的方法分别显著降低了物联网传感节点的能耗和#PRBs,降幅高达23.09%和25.98%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2745/5552094/ad334cf538a3/pone.0182527.g001.jpg

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