Quality, Reliability, Security and Robustness in Heterogeneous Networks. 12th International Conference, QShine 2016, Seoul, Korea, July 7–8, 2016, Proceedings

Research Article

An Optimization Technique of Spatial Reuse for Communication in Smart City Environment

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  • @INPROCEEDINGS{10.1007/978-3-319-60717-7_38,
        author={Cong Ran and Qing-guo Xiong and Wen-xiang Li and Xia Wei},
        title={An Optimization Technique of Spatial Reuse for Communication in Smart City Environment},
        proceedings={Quality, Reliability, Security and Robustness in Heterogeneous Networks. 12th International Conference, QShine 2016, Seoul, Korea, July 7--8, 2016, Proceedings},
        proceedings_a={QSHINE},
        year={2017},
        month={8},
        keywords={Smart city Power control Communication conflict Spatial reuse},
        doi={10.1007/978-3-319-60717-7_38}
    }
    
  • Cong Ran
    Qing-guo Xiong
    Wen-xiang Li
    Xia Wei
    Year: 2017
    An Optimization Technique of Spatial Reuse for Communication in Smart City Environment
    QSHINE
    Springer
    DOI: 10.1007/978-3-319-60717-7_38
Cong Ran1, Qing-guo Xiong1, Wen-xiang Li1,*, Xia Wei1
  • 1: Wuhan University of Science and Technology
*Contact email: liwx2006@hotmail.com

Abstract

In the application scenario of smart city, there exist many portable mobile devices that communicate in Wi-Fi technique, so communication conflicts among them are unavoidable and lead to low network performance and high energy consumption. To address this problem, this paper studies the optimization method of spatial reuse based on dynamic control of transmit power. Considering the metric of spatial reuse factor, this paper explores how to select the proper transmission radius and power to decrease the adverse effects from the hidden terminals and the exposed terminals. By setting the frame control field in the MAC layer frame according to the received signal strength, the method can adaptively adjust the transmission power of the communication nodes pair to maintain the reception power in the appropriate range. Through the simulation experiment in NS-2, the feasibility and effect of the optimization method for spatial reuse and energy saving are verified.