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Optimal beacon interval for TDMA-based MAC in wireless sensor networks

机译:无线传感器网络中基于TDMA的MAC的最佳信标间隔

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An energy-efficient Medium Access Control (MAC) protocol can significantly elongate the lifetime of wireless sensor networks (WSNs), by reducing the duty-cycle of sensor nodes to an ultra-low level. TDMA-based MACs can greatly reduce idle listening, collision, overhearing and therefore are very energy efficient in data transfer at the cost of requiring tight time synchronization through periodically beacon dissemination. The length of the beacon interval may greatly affect the energy efficiency of a TDMA-based MAC. A shorter beacon interval leads to higher synchronization cost due to frequent beacon sending and receiving, while a longer beacon interval will lead to a larger guard time due to clock drift. Therefore, there is a tradeoff between these two parts of energy consumption. In this paper, we investigate the optimal beacon interval for TDMA- based MAC in low duty-cycle sensor networks, and then present a strategy that adaptively utilizing the optimal beacon interval in a TDMA-based MAC protocol (called Opt-TDMA). Experimental results demonstrate that Opt-TDMA is more energy-efficient than SCP-MAC.
机译:节能的媒体访问控制(MAC)协议可以通过将传感器节点的占空比降低到超低水平来显着延长无线传感器网络(WSN)的寿命。基于TDMA的MAC可以极大地减少空闲侦听,冲突,窃听,因此在数据传输中非常节能,但需要通过定期的信标分发来实现紧密的时间同步。信标间隔的长度可能会大大影响基于TDMA的MAC的能量效率。信标间隔越短,由于频繁发送和接收信标而导致的同步成本就越高,而信标间隔越长,由于时钟漂移会导致更长的保护时间。因此,在能耗的这两个部分之间要进行权衡。在本文中,我们研究了低占空比传感器网络中基于TDMA的MAC的最佳信标间隔,然后提出了在基于TDMA的MAC协议(称为Opt-TDMA)中自适应利用最佳信标间隔的策略。实验结果表明,Opt-TDMA比SCP-MAC更节能。

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