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Medium Access Control with an Energy-Efficient Algorithm for Wireless Sensor Networks

机译:具有用于无线传感器网络的节能算法的媒体访问控制

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This paper proposes an enhanced B-MAC (ENBMAC), a carrier sense Medium Access Control (MAC) protocol with ultra low power operations for wireless sensor networks. Due to battery-operated computing and sensing devices in wireless sensor networks, the development of MAC protocols that efficiently reduce power consumption is an important issue. B-MAC provides bidirectional interfaces such as Clear Channel Assessment (CCA), Low Power Listening (LPL) and uses an adaptive preamble sampling scheme to optimize performance and conserve energy. This reduces the amount of energy by comparing to other MAC protocols in WSNs. However, B-MAC can not achieve the overhearing avoidance. To solve this problem, we propose Node Recognition (NR) algorithm using the next hop address in MAC layer. Because this mechanism tries to handle the overhearing avoidance, ENBMAC makes it possible to extend the lifetime of the wireless sensor networks that contain a large number of nodes. The experiment results show that ENBMAC protocol reduces the energy consumed by receiving up to 90 percent comparing to B-MAC.
机译:本文提出了增强型B-MAC(ENBMAC),具有用于无线传感器网络的超低功耗操作的载波侦听介质访问控制(MAC)协议。由于无线传感器网络中的电池操作的计算和传感设备,MAC协议的开发有效地降低功耗是一个重要问题。 B-MAC提供双向接口,如清晰的通道评估(CCA),低功耗侦听(LPL),并使用自适应前导码采样方案来优化性能并节省能量。通过与WSN中的其他MAC协议进行比较,这减少了能量的量。然而,B-MAC无法实现过度避免。为了解决这个问题,我们使用MAC层中的下一跳地址提出节点识别(NR)算法。因为这种机制尝试处理易消化的避免,所以enbMac使得可以扩展包含大量节点的无线传感器网络的寿命。实验结果表明,ENBMAC协议通过与B-MAC相比接受高达90%的能量减少了所消耗的能量。

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