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Performance Evaluation and Interference Characterization of Wireless Sensor Networks for Complex High-Node Density Scenarios

机译:复杂高节点密度方案的无线传感器网络的性能评估和干扰表征

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摘要

The uncontainable future development of smart regions, as a set of smart cities’ assembled networks, is directly associated with a growing demand of full interactive and connected ubiquitous smart environments. To achieve this goal of global connection, a large number of transceivers and multiple wireless systems will be involved to provide user services and applications (i.e., Ambient Assisted Living, emergency situations, e-health monitoring, or Intelligent Transportation Systems) anytime and anyplace, regardless of the devices, networks, or systems used. Adequate, efficient, and effective radio wave propagation tools, methodologies, and analyses in complex environments (indoor and outdoor) are crucial to prevent communication limitations such as coverage, capacity, speed, or channel interferences due to nodes’ density or channel restrictions. In this work, radio wave propagation characterization in an urban indoor and outdoor environment, at ISM 2.4 GHZ and 5 GHz Wireless Sensor Networks (WSNs), has been assessed. The selected scenario is an auditorium placed in a free open area surrounded by inhomogeneous vegetation. User density within the scenario, in terms of inherent transceivers density, poses challenges to the overall system operation, given by multiple node operation which increases overall interference levels. By means of an in-house developed 3D ray launching algorithm, the impact of variable density wireless sensor network operation within this complex scenario is presented. This analysis and the proposed simulation methodology can lead in an adequate interference characterization, considering conventional transceivers as well as wearables, which provide suitable information for the overall network performance in complex crowded indoor and outdoor scenarios.
机译:作为一组智能城市组装网络的智能区域的无法无法接近的未来发展,与越来越多的互联网智能环境的需求直接相关。为了实现全球连接的这一目标,将涉及大量收发器和多种无线系统,以便随时和任何地方提供用户服务和应用(即环境辅助生活,紧急情况,电子健康监测或智能运输系统),无论使用的设备,网络或系统。复杂环境(室内和室外)中充足,高效,有效的无线电波传播工具,方法和分析对于防止由于节点密度或通道限制而导致的通信限制,例如覆盖,容量,速度或通道干扰。在这项工作中,已经评估了在ISM 2.4 GHz和5 GHz无线传感器网络(WSN)中的城市室内和室外环境中的无线电波传播表征。所选方案是一个礼堂,放置在由不均匀植被包围的自由开口区域。在方案内的用户密度,在固有的收发器密度方面,由多个节点操作给出的整体系统操作构成挑战,这增加了整体干扰水平。通过内部开发的3D射线发射算法,提出了这种复杂场景中的可变密度无线传感器网络运行的影响。这种分析和所提出的仿真方法可以在适当的干扰表征中引导,考虑传统的收发器以及可穿戴物,这为复杂拥挤的室内和户外情景中的整体网络性能提供了适当的信息。

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