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A directional multicasting-based architecture for wireless sensor networks

机译:无线传感器网络的基于定向多播的体系结构

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Energy scarcity, limited transmission range and interference are the primary challenges that need to be considered judiciously for Wireless Sensor Networks (WSNs). Directional data transmission can improve the network capacity as well as the network lifetime by facilitating spatial multiplexing and range extension, which inherently yields interference reduction, as the result of concurrent data transmissions. Another promising method of achieving energy conservation is the transmission power control. Transmission power control also contributes to the mitigation of interference thereby promotes throughput by means of rendering multiple hosts to communicate in the same directionality simultaneously without impairing each other's transmissions. Harnessing the antenna directionality with dynamic power control gives the opportunity to WSNs to consume their scarce energy resources in a more efficient manner. In this article, we propose an energy efficient multi-cast routing-based architecture (MRBA). This architecture mainly bases on the idea of multi-cast routing methodology with hop-by-hop data fragmentation and power-controlled directional transmission. Multiple next-hop utilization during packet transmission together with directional relaying of the sub-packets provide interference reduction together with fair data transfer load sharing among the nodes. Simulation results show that significant improvements can be achieved in terms of energy saving and end-to-end delay enhancement with respect to omnidirectional architectures.
机译:能源短缺,有限的传输范围和干扰是无线传感器网络(WSN)需要明智考虑的主要挑战。定向数据传输可以通过促进空间复用和范围扩展来提高网络容量以及网络寿命,而空间复用和范围扩展本身就是减少并发数据传输的结果。实现节能的另一种有希望的方法是传输功率控制。传输功率控制还有助于减轻干扰,从而通过使多个主机同时以相同方向性进行通信而不会损害彼此的传输,从而提高了吞吐量。利用动态功率控制来控制天线方向性,为无线传感器网络提供了以更有效的方式消耗其稀缺能源的机会。在本文中,我们提出了一种节能的基于多播路由的体系结构(MRBA)。该体系结构主要基于具有逐跳数据分段和功率控制的定向传输的组播路由方法的思想。数据包传输期间的多个下一跳利用率以及子数据包的定向中继可减少干扰,并在节点之间共享公平的数据传输负载。仿真结果表明,相对于全向架构,在节能和端到端延迟增强方面可以实现显着改善。

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