Buffer-aware and QoS-effective resource allocation scheme in WBANs

Zhiqiang Liu, B. Liu, C. Chen
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引用次数: 3

Abstract

Wireless Body Area Network (WBAN) represents one of the most promising networks to provide health applications for improving the quality of life, such as ubiquitous e-Health services and real-time health monitoring. The resource allocation of an energy-constrained, heterogeneous WBAN is a critical issue that should consider both energy efficiency and Quality of Service (QoS) requirements with the dynamic link characteristics, especially when the limited resource cannot satisfy the expected QoS requirements. In this paper, a buffer aware Energy-efficient and QoS-effective resource allocation scheme is proposed in which the sensor queue buffer states, constraints of QoS metrics and the characteristics of dynamic links are considered. Specifically, a buffer aware sensor evaluation method is designed to dynamically evaluate the sensor state with considering the sensor buffer states for improving the system performance. We then formulate the resource allocation problem for optimizing the transmission power, the transmission rate and the allocated time slots for each sensor to minimize the sum mix-cost, which is defined to characterize the energy cost and QoS cost between attainable QoS support and QoS requirements. Simulation results demonstrate the effectiveness of the buffer aware sensor evaluation method and the proposed energy-efficient and QoS-effective resource allocation scheme.
wban中缓冲区感知和qos有效的资源分配方案
无线体域网络(WBAN)是最有希望提供改善生活质量的健康应用的网络之一,例如无处不在的电子保健服务和实时健康监测。能量受限的异构WBAN的资源分配是一个关键问题,特别是在有限的资源不能满足预期的QoS要求时,应同时考虑链路动态特性的能源效率和服务质量(QoS)要求。本文综合考虑传感器队列缓冲状态、QoS指标约束和动态链路的特点,提出了一种具有缓冲区感知的节能且QoS有效的资源分配方案。具体而言,设计了一种缓冲器感知传感器评估方法,在考虑传感器缓冲状态的情况下对传感器状态进行动态评估,以提高系统性能。然后,我们制定了资源分配问题,以优化每个传感器的传输功率、传输速率和分配的时隙,以最小化混合成本总和,该混合成本的定义是表征可实现的QoS支持与QoS要求之间的能量成本和QoS成本。仿真结果验证了缓冲感知传感器评价方法的有效性,以及提出的节能、qos有效的资源分配方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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