Lee JongHyup, Pak Dohyun
Department of Mathematical Finance, Gachon University, 1342 Seongnamdaero, Seongnam-si 13120, Korea.
Sensors (Basel). 2016 Aug 29;16(9):1380. doi: 10.3390/s16091380.
For practical deployment of wireless sensor networks (WSN), WSNs construct clusters, where a sensor node communicates with other nodes in its cluster, and a cluster head support connectivity between the sensor nodes and a sink node. In hybrid WSNs, cluster heads have cellular network interfaces for global connectivity. However, when WSNs are active and the load of cellular networks is high, the optimal assignment of cluster heads to base stations becomes critical. Therefore, in this paper, we propose a game theoretic model to find the optimal assignment of base stations for hybrid WSNs. Since the communication and energy cost is different according to cellular systems, we devise two game models for TDMA/FDMA and CDMA systems employing power prices to adapt to the varying efficiency of recent wireless technologies. The proposed model is defined on the assumptions of the ideal sensing field, but our evaluation shows that the proposed model is more adaptive and energy efficient than local selections.
对于无线传感器网络(WSN)的实际部署,WSN构建簇,其中传感器节点与其簇中的其他节点进行通信,并且簇头支持传感器节点与汇聚节点之间的连接。在混合WSN中,簇头具有用于全局连接的蜂窝网络接口。然而,当WSN活跃且蜂窝网络负载较高时,簇头到基站的最优分配变得至关重要。因此,在本文中,我们提出了一种博弈论模型来找到混合WSN中基站的最优分配。由于根据蜂窝系统通信和能量成本不同,我们针对采用电价的时分多址/频分多址(TDMA/FDMA)和码分多址(CDMA)系统设计了两种博弈模型,以适应近期无线技术变化的效率。所提出的模型是在理想传感场的假设下定义的,但我们的评估表明,所提出的模型比局部选择更具适应性和能源效率。