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Optimal Resource Allocation for Pervasive Health Monitoring Systems with Body Sensor Networks

机译:具有人体传感器网络的普适健康监测系统的最佳资源分配

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Pervasive health monitoring is an eHealth service, which plays an important role in prevention and early detection of diseases. There are two major challenges in pervasive health monitoring systems with Body Sensor Networks (BSNs). The first challenge is the sustainable power supply for BSNs. The second challenge is Quality of Service (QoS) guarantee for the delivery of data streams. In this paper, we optimize the resource allocations to provide a sustainable and high-quality service in health monitoring systems. Specifically, we formulate and solve two resource optimization problems, respectively. In the first optimization problem, steady-rate optimization problem, we optimize the source rate at each sensor to minimize the rate fluctuation with respect to the average sustainable rate, subject to the requirement of uninterrupted service. The first optimization problem is solved by a proposed analytical solution. The second optimization problem is formulated based on the optimal source rates of the sensors obtained in the steady-rate optimization problem. In the second optimization problem, we jointly optimize the transmission power and the transmission rate at each aggregator to provide QoS guarantee to data delivery. The second optimization problem is converted into a convex optimization problem, which is then solved efficiently. In the simulations, we demonstrate that the proposed optimized scheme enables the pervasive health monitoring system to provide a sustainable service with guaranteed low delay and low Packet Loss Rate (PLR) to subscribers.
机译:全面健康监测是一项eHealth服务,在预防和早期发现疾病方面发挥着重要作用。使用人体传感器网络(BSN)的普及型健康监测系统存在两个主要挑战。第一个挑战是BSN的可持续供电。第二个挑战是数据流交付的服务质量(QoS)保证。在本文中,我们优化了资源分配,以在健康监控系统中提供可持续的高质量服务。具体来说,我们分别制定和解决两个资源优化问题。在第一个优化问题(稳定速率优化问题)中,我们根据不间断服务的要求,优化每个传感器的源速率,以最大程度地降低相对于平均可持续速率的速率波动。通过提出的分析解决方案解决了第一个优化问题。根据在稳定速率优化问题中获得的传感器的最佳源速率来制定第二优化问题。在第二个优化问题中,我们共同优化每个聚合器的传输功率和传输速率,以为数据传递提供QoS保证。将第二个优化问题转换为凸优化问题,然后将其有效解决。在仿真中,我们证明了所提出的优化方案使普适健康监控系统能够为用户提供具有保证的低延迟和低丢包率(PLR)的可持续服务。

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