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用于远程无线传感器网络的节能传输:一种适用于紧急情况的集成高空平台/卫星架构

Energy-Efficient Transmissions for Remote Wireless Sensor Networks: An Integrated HAP/Satellite Architecture for Emergency Scenarios.

作者信息

Dong Feihong, Li Hongjun, Gong Xiangwu, Liu Quan, Wang Jingchao

机构信息

College of Communications Engineering, PLA University of Science and Technology, 88 Houbiaoying Rd., Nanjing 210007, China.

Institute of China Electronic System Engineering Corporation, 13 Dacheng Rd., Beijing 100141, China.

出版信息

Sensors (Basel). 2015 Sep 3;15(9):22266-90. doi: 10.3390/s150922266.

Abstract

A typical application scenario of remote wireless sensor networks (WSNs) is identified as an emergency scenario. One of the greatest design challenges for communications in emergency scenarios is energy-efficient transmission, due to scarce electrical energy in large-scale natural and man-made disasters. Integrated high altitude platform (HAP)/satellite networks are expected to optimally meet emergency communication requirements. In this paper, a novel integrated HAP/satellite (IHS) architecture is proposed, and three segments of the architecture are investigated in detail. The concept of link-state advertisement (LSA) is designed in a slow flat Rician fading channel. The LSA is received and processed by the terminal to estimate the link state information, which can significantly reduce the energy consumption at the terminal end. Furthermore, the transmission power requirements of the HAPs and terminals are derived using the gradient descent and differential equation methods. The energy consumption is modeled at both the source and system level. An innovative and adaptive algorithm is given for the energy-efficient path selection. The simulation results validate the effectiveness of the proposed adaptive algorithm. It is shown that the proposed adaptive algorithm can significantly improve energy efficiency when combined with the LSA and the energy consumption estimation.

摘要

远程无线传感器网络(WSN)的一个典型应用场景被确定为应急场景。在应急场景中进行通信的最大设计挑战之一是节能传输,这是因为在大规模自然和人为灾害中电能稀缺。集成高空平台(HAP)/卫星网络有望最佳地满足应急通信需求。本文提出了一种新颖的集成HAP/卫星(IHS)架构,并对该架构的三个部分进行了详细研究。链路状态通告(LSA)的概念是在慢平坦莱斯衰落信道中设计的。终端接收并处理LSA以估计链路状态信息,这可以显著降低终端的能耗。此外,使用梯度下降和微分方程方法推导了HAP和终端的传输功率要求。在源级和系统级对能耗进行了建模。给出了一种用于节能路径选择的创新自适应算法。仿真结果验证了所提自适应算法的有效性。结果表明,所提自适应算法与LSA和能耗估计相结合时,可以显著提高能源效率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b2fa/4610508/f02eacdf41ed/sensors-15-22266-g001.jpg

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