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An Energy-Efficien Slotted Sense Multiple Access Broadcast Protocol for Reliable Command Delivery in Dynamic Wireless Sensor Networks

机译:节能的开槽感测多接入广播协议,用于动态无线传感器网络中可靠的命令传送

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摘要

In industrial monitoring and control applications, a server often has to send a command to a node or group of nodes in wireless sensor networks. Flooding achieves high reliability of message delivery by allowing nodes to take the redundancy of receiving the identical message multiple times. However, nodes consume much energy due to this redundancy and the long duty cycle. A reliable slotted broadcast protocol (RSBP) tackles this problem by allocating a distinct broadcast slot (BS) to every node using a tree topology. Not only does it remove collision, but it also minimizes energy consumption such that every node remains active only during its parent’s broadcast slot and its own broadcast slot to receive and rebroadcast a message, respectively. However, it suffers from low reliability in harsh environments due to the compete removal of redundancy and low responsiveness to the changes in network topology due to the global scheduling of slots. Our approach allocates one distinct broadcast sharable slot (BSS) to each tree level, thus making a BSS schedule topology-independent. Then, nodes at the same level compete to rebroadcast a message to nodes at one level higher within the BSS, thus allowing the redundancy. In addition, it uses a slot-scheduled transmission within BSS that can further improve reliability by reducing message collisions and also enables the precise management of energy. According to simulations and experiments, the proposed approach can achieve high reliability comparable to flooding and low-energy consumption comparable to RSBP.
机译:在工业监测和控制应用,一个服务器通常具有将命令发送到在无线传感器网络中的节点或节点组。驱油通过允许节点采取多次接收到相同消息的冗余实现消息传递的高可靠性。然而,节点由于这种冗余和长占空比消耗大量的能量。一个可靠的开槽广播协议(RSBP)通过分配不同的广播时隙(BS)使用一个树状拓扑结构的每个节点铲球这个问题。它不仅删除碰撞,但它也最大限度地减少能源消耗,使得每个节点只在其父母的广播时段和自己的广播时段接收和转播分别的消息,保持活动状态。然而,患有在恶劣的环境可靠性低,由于竞争去除冗余和低响应于网络拓扑结构的变化的由于狭槽的全局调度。我们的方法分配一个不同的可共享的广播时隙(BSS)到每个树水平,从而使一个BSS调度拓扑无关。然后,在同一水平竞争节点在BSS内的一个电平高转播消息的节点,因此允许冗余。此外,它使用BSS内的槽调度传输,可以通过减少消息冲突进一步提高可靠性,并且还能够使能量的精确管理。根据仿真和实验,该方法能实现高可靠性相媲美洪水和低能源消耗堪比RSBP。

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