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Unsynchronized Energy-Efficient Medium Access Control and Routing in Wireless Sensor Networks

机译:无线传感器网络中的非同步节能媒体访问控制和路由

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The challenge in the design of energy-efficient medium access protocols for Wireless Sensor Networks (WSNs) is to use the radio only in an "on demand" manner, as the radio transceiver is a major source of WSN energy consumption. Energy-efficient MAC protocols periodically switch the radio transceiver hardware between the costly operation modes receive and transmit, and an energy-saving sleep mode. Most existing power saving MAC approaches synchronize the nodes in the network to let the nodes synchronously wake up at designated instants to exchange pending messages. Synchronization however is expensive and uneasy to achieve. With low traffic, the overhead for maintaining synchronization and slot coordination across a large multi-hop WSN may exceed the energy spent for the actual data. Mechanisms renouncing on synchronization are likely to be more efficient in low-traffic scenarios. We investigate modifications and optimizations on recently proposed fully unsynchronized power saving MAC protocols for wireless sensor networks based on asynchronous wake-up patterns and intended for sensor networks with low traffic requirements.
机译:无线传感器网络(WSN)的高效节能媒体访问协议设计中的挑战是仅以“按需”方式使用无线电,因为无线电收发器是WSN能耗的主要来源。节能型MAC协议会定期在昂贵的接收和发送操作模式与节能睡眠模式之间切换无线电收发器硬件。现有的大多数节能MAC方法都会同步网络中的节点,以使节点在指定的时刻同步唤醒,以交换未决消息。然而,同步是昂贵的并且难以实现。对于低流量,用于在大型多跳WSN上维持同步和时隙协调的开销可能会超过为实际数据花费的能量。在低流量的情况下,放弃同步的机制可能更有效。我们针对基于异步唤醒模式的无线传感器网络,针对低流量需求的传感器网络,对最近提出的完全不同步的节能MAC协议进行了研究和优化。

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