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A Quorum-Based Energy-Saving MAC Protocol Design for Wireless Sensor Networks

机译:无线传感器网络基于仲裁的节能MAC协议设计

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摘要

Wireless sensor networks are mainly designed for environment surveillance, wherein wireless sensor nodes cooperate to get their job done. Generally, wireless sensors are battery powered; therefore, it is crucial for them to efficiently use their battery resources. Most of the existing power-saving protocols achieve power savings by periodically putting sensor nodes to sleep. Such a regular sleep/awake mechanism fails to adjust a sensor node's sleep duration based on its traffic load, thus causing either lower power efficiency or higher latency. Furthermore, sensors may be deployed in hostile environments and may thus unexpectedly fail. Most power-saving protocols do not promptly react to such link breakage, resulting in long transmission delays. In this paper, we propose a quorum-based medium access control (QMAC) protocol that enables sensor nodes to sleep longer under light loads. Since traffic flows toward the sink node in wireless sensor networks, a new concept, i.e., the next-hop group, is also proposed to reduce transmission latency. Simulation results verify that the proposed QMAC saves more energy and keeps the transmission latency low.
机译:无线传感器网络主要设计用于环境监视,其中无线传感器节点相互协作以完成其工作。通常,无线传感器由电池供电。因此,对他们而言,有效利用电池资源至关重要。现有的大多数节能协议都通过定期使传感器节点进入睡眠状态来实现节能。这样的常规睡眠/唤醒机制无法基于其流量负载来调整传感器节点的睡眠持续时间,从而导致较低的功率效率或较高的等待时间。此外,传感器可能部署在恶劣的环境中,因此可能会意外失败。大多数节电协议不会立即对这种链路断开做出反应,从而导致较长的传输延迟。在本文中,我们提出了一种基于仲裁的媒体访问控制(QMAC)协议,该协议可使传感器节点在轻负载下睡眠更长的时间。由于流量流向无线传感器网络中的宿节点,因此还提出了一种新概念,即下一跳组,以减少传输延迟。仿真结果验证了所提出的QMAC可以节省更多的能量并保持较低的传输延迟。

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