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An Efficient MAC Protocol with Correlated Connection Arrival and Variable Slot Assignment in Wireless Sensor Networks

机译:具有相关连接到达的有效MAC协议和无线传感器网络中的可变插槽分配

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We present a novel analytical framework to investigate the performance of activity based TDMA slot scheduling under varying traffic conditions in cluster-based wireless sensor networks. Dynamic TDMA Slot Scheduling (DTSS) scheme is presented to analyze the channel utilization and packet dropping probability in bursty network environment under low and high traffic conditions with a large number of sensor nodes in a single cluster. DTSS scheme will allow the network to adapt to the changing traffic load. Based on the network activity, the connection is established between the cluster-head node and those sensors nodes which have data to send, and requested number of TDMA slots is assigned to them dynamically. We have modeled the data traffic by a correlated stochastic process (i.e. Markov chain) for a network where the second and subsequent connection arrival rate is dependent on the first arrival rate. We numerically compared DTSS with traditionally proposed static TDMA model and proved substantial improvement in the bandwidth efficiency and decrease in connection blocking probability in low activity networks. The drawback of the proposed system is also investigated. Results show that the efficiency of the MAC protocol can be increased significantly using the proposed model with reasonably low packet dropping probability.
机译:我们提出了一种新的分析框架,以研究基于集群的无线传感器网络的不同交通条件下基于活动的TDMA插槽调度的性能。提出了动态TDMA插槽调度(DTSS)方案,以分析低于和高流量条件下的突发网络环境中的信道利用率和分组丢弃概率,在单个集群中具有大量传感器节点。 DTSS方案将允许网络适应变化的流量负载。基于网络活动,在群集头节点和具有数据发送数据的传感器节点之间建立连接,并动态分配给它们的请求数量的TDMA插槽。我们通过相关的随机过程(即Markov链)为网络进行了建模,用于网络第二和后续连接到达率取决于第一到达率。我们在数值上比较了传统上提出的静态TDMA模型的DTS,并证明了在低活动网络中的带宽效率和连接阻塞概率下降的显着提高。还研究了所提出的系统的缺点。结果表明,使用具有相当低的分组丢弃概率的提出模型,可以显着地增加MAC协议的效率。

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