Zhang Zhaoyang, Wang Honggang, Wang Chonggang, Fang Hua
Department of Electrical and Computer Engineering, University of Massachusetts, Dartmouth, USA.
InterDigital, USA.
IEEE Trans Emerg Top Comput. 2013 Jun;1(1):121-132. doi: 10.1109/TETC.2013.2274430.
Wireless body area networks (WBANs) are cyber-physical systems (CPS) that have emerged as a key technology to provide real-time health monitoring and ubiquitous healthcare services. WBANs could operate in dense environments such as in a hospital and lead to a high mutual communication interference in many application scenarios. The excessive interferences will significantly degrade the network performance including depleting the energy of WBAN nodes more quickly, and even eventually jeopardize people's lives due to unreliable (caused by the interference) healthcare data collections. Therefore, It is critical to mitigate the interference among WBANs to increase the reliability of the WBAN system while minimizing the system power consumption. Many existing approaches can deal with communication interference mitigation in general wireless networks but are not suitable for WBANs due to their ignoring the social nature of WBANs. Unlike the previous research, we for the first time propose a power game based approach to mitigate the communication interferences for WBANs based on the people's social interaction information. Our major contributions include: (1) model the inter-WBANs interference, and determine the distance distribution of the interference through both theoretical analysis and Monte Carlo simulations; (2) develop social interaction detection and prediction algorithms for people carrying WBANs; (3) develop a power control game based on the social interaction information to maximize the system's utility while minimize the energy consumption of WBANs system. The extensive simulation results show the effectiveness of the power control game for inter-WBAN interference mitigation using social interaction information. Our research opens a new research vista of WBANs using social networks.
无线体域网(WBANs)是一种信息物理系统(CPS),已成为提供实时健康监测和普及医疗服务的关键技术。WBANs可以在医院等密集环境中运行,在许多应用场景中会导致高度的相互通信干扰。过多的干扰将显著降低网络性能,包括更快地耗尽WBAN节点的能量,甚至最终由于不可靠的(由干扰引起的)医疗数据收集而危及人们的生命。因此,减轻WBANs之间的干扰以提高WBAN系统的可靠性,同时最小化系统功耗至关重要。许多现有方法可以处理一般无线网络中的通信干扰缓解问题,但由于忽略了WBANs的社会性质,不适用于WBANs。与以往的研究不同,我们首次提出了一种基于功率博弈的方法,以基于人们的社会交互信息减轻WBANs的通信干扰。我们的主要贡献包括:(1)对WBANs之间的干扰进行建模,并通过理论分析和蒙特卡罗模拟确定干扰的距离分布;(2)为携带WBANs的人开发社会交互检测和预测算法;(3)基于社会交互信息开发功率控制博弈,以最大化系统效用,同时最小化WBANs系统的能耗。广泛的仿真结果表明了利用社会交互信息进行WBAN间干扰缓解的功率控制博弈的有效性。我们的研究开辟了利用社交网络研究WBANs的新视野。