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Dual ring parent initiated topology control algorithm for 802.15.4-based non-beacon wireless sensor networks

机译:基于802.15.4的非信标无线传感器网络的双环双亲发起的拓扑控制算法

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The IEEE 802.15.4 standard was designed especially for low-rate low-power personal area networks. It does not specify any energy conservation for devices while operating in non-beacon mode. Therefore, all coordinators will be always in transmit, receive or idle state and such a network will consume significant amount of energy. To cope with this problem a new energy-efficient topology control algorithm for 802.15.4-based wireless sensor networks operating in non-beacon mode is proposed. Based on location information, the proposed algorithm minimizes a set of coordinators thus reducing redundant coverage of the network area. It requires only 1-hop neighborhood information to do so. Also it provides synchronization technique for peer-to-peer topology networks. In other words, the proposed algorithm makes the dense network sparser than existing algorithms do. Since only selected nodes act as coordinators at the particular time interval, it reduces whole network energy consumption and prolongs operational network lifetime thus increasing packet delivery ratio. The simulations show that the proposed algorithm improves energy-efficiency of the 802.15.4-based peer-to-peer wireless sensor network about twice and also improves packet delivery ratio.
机译:IEEE 802.15.4标准是专为低速率低功率个人局域网设计的。在非信标模式下运行时,它没有为设备指定任何节能措施。因此,所有协调器将始终处于发送,接收或空闲状态,并且这样的网络将消耗大量能量。为了解决这个问题,提出了一种新的节能拓扑控制算法,用于在非信标模式下运行的基于802.15.4的无线传感器网络。基于位置信息,所提出的算法将一组协调器最小化,从而减少了网络区域的冗余覆盖范围。它只需要一跳邻居信息即可。它还为对等拓扑网络提供了同步技术。换句话说,与现有算法相比,所提出的算法使密集网络稀疏。由于只有选定的节点在特定的时间间隔内充当协调器,因此它减少了整个网络的能耗并延长了网络的使用寿命,从而提高了数据包的传输率。仿真表明,该算法将基于802.15.4的对等无线传感器网络的能效提高了约两倍,并且提高了数据包的传输率。

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