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Efficient Data Dissemination in Electromagnetic Wireless Nano-Sensor Networks

机译:电磁无线纳米传感器网络中的高效数据分发

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Recent advances in wireless communications and electronics have enabled the development of nano sensor nodes that are able to process and transmit sensed data. These tiny sensor nodes leverage the idea of nano sensor networks that are expected to find several applications such as health care monitoring, wildlife surveillance, etc. The networking of several nano-devices is still a major open issue. In fact, the very limited transmission ranges in the terahertz band renders direct communication between nano-devices unfeasible most of the time. Hence, multihop communication among nano-nodes is currently regarded as the viable solution for nano-network realization. However, the simplicity and energy constraints of nano-sensor nodes are far from the complexity of classical multi-hop routing and forwarding protocols. On the other hand, researches on dedicated communications protocols for Wireless Nano Sensor Networks (WNSNs) are still in their early stage. In this paper, we propose a geographic routing algorithm for efficient data dissemination in electromagnetic WNSN. We evaluate our solution in the context of a health-monitoring application where multiple nano-devices are deployed in an artery. We compare our proposal to the flooding scheme and results confirm that the geographic routing scheme is scalable and energy efficient without impairing the packet delivery ratio.
机译:无线通信和电子领域的最新进展使得能够开发能够处理和传输感测数据的纳米传感器节点成为可能。这些微小的传感器节点利用了纳米传感器网络的思想,该网络有望找到多种应用,例如医疗保健监控,野生动植物监视等。多个纳米设备的联网仍然是一个主要的开放性问题。实际上,太赫兹频带中非常有限的传输范围使得纳米设备之间的直接通信在大多数时间是不可行的。因此,当前纳米节点之间的多跳通信被认为是实现纳米网络的可行解决方案。然而,纳米传感器节点的简单性和能量约束远非经典的多跳路由和转发协议的复杂性。另一方面,对无线纳米传感器网络(WNSN)专用通信协议的研究仍处于早期阶段。在本文中,我们提出了一种地理路由算法,用于电磁WNSN中的有效数据分发。我们在健康监控应用程序中评估我们的解决方案,在该应用程序中,在动脉中部署了多个纳米设备。我们将我们的提议与泛洪方案进行了比较,结果证实了地理路由方案可扩展且具有高能效,而不会影响数据包的传输率。

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