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Priority Schemes for Life Extension and Data Delivery in Body Area Wireless Sensor Networks with Cognitive Radio Capabilities

机译:具有认知无线电功能的身体区域无线传感器网络中生命扩展和数据传递的优先级方案

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摘要

Wireless sensor networks have recently been used to monitor bioelectric signals generated by the human body. However, since the dimensions and capabilities of the network nodes are small and limited, a problem is generated inherently by the energy consumption and radioelectric interference. In view of this, we propose two priority schemes to improve the performance of the network. In the first one, we aim at increasing the system lifetime by reducing the number of transmissions of nodes with low energy levels. In the second scheme, we aim at conveying priority data to the sink node as fast and efficient as possible. In the former scheme, users can be monitored for long time periods considering a low data generation. On the other hand, the latter scheme allows expediting transmission of important data when energy efficiency is not relevant. In this article, we mathematically model, analyze, and study the performance of the system for both priority schemes considering cognitive radio capabilities to make efficient use of resources and limit the radioelectric interference when the network transmits both continuous monitoring and event detection information. Numerical results provided in this work allow a careful parameter selection for practical implementation of BANETs.
机译:最近用于监测人体产生的生物电信号的无线传感器网络。然而,由于网络节点的尺寸和能力小而且有限,因此通过能量消耗和无线电干扰固有地产生问题。鉴于此,我们提出了两个优先事项来提高网络性能。在第一个中,我们目的通过减少具有低能量水平的节点的传输数量来增加系统寿命。在第二种方案中,我们的目标是尽可能快速和高效地将优先级数据传送到水槽节点。在前面的方案中,考虑低数据生成,可以长时间监视用户。另一方面,后一种方案允许在能量效率不相关时加速重要数据的传输。在本文中,考虑认知无线电能力以便在网络发送连续监测和事件检测信息时,我们在数学上进行数学上模拟,分析和研究系统的性能,以考虑认知无线电能力,以便有效地利用资源并限制无线电干扰。本工作中提供的数值结果允许仔细参数选择,以便进行大规模的实际实施。

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