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Statistical Delay QoS Provisioning for Energy-Efficient Spectrum-Sharing Based Wireless Ad Hoc Sensor Networks

机译:节能频谱共享基于无线Ad Hoc传感器网络的统计延迟QoS供应

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摘要

In this paper, we develop the statistical delay quality-of-service (QoS) provisioning framework for the energy-efficient spectrum-sharing based wireless ad hoc sensor network (WAHSN), which is characterized by the delay-bound violation probability. Based on the established delay QoS provisioning framework, we formulate the nonconvex optimization problem which aims at maximizing the average energy efficiency of the sensor node in the WAHSN while meeting PU’s statistical delay QoS requirement as well as satisfying sensor node’s average transmission rate, average transmitting power, and peak transmitting power constraints. By employing the theories of fractional programming, convex hull, and probabilistic transmission, we convert the original fractional-structured nonconvex problem to the additively structured parametric convex problem and obtain the optimal power allocation strategy under the given parameter via Lagrangian method. Finally, we derive the optimal average energy efficiency and corresponding optimal power allocation scheme by employing the Dinkelbach method. Simulation results show that our derived optimal power allocation strategy can be dynamically adjusted based on PU’s delay QoS requirement as well as the channel conditions. The impact of PU’s delay QoS requirement on sensor node’s energy efficiency is also illustrated.
机译:在本文中,我们开发了基于节能频谱共享的无线ad Hoc传感器网络(WAHSN)的统计延迟质量(QoS)供应框架,其特征在于延迟绑定的违规概率。基于既定的延迟QoS供应框架,我们制定了非透露优化问题,旨在最大化WAHSN中传感器节点的平均能量效率,同时满足PU的统计延迟QoS要求以及令人满意的传感器节点的平均传输速率,平均传输功率和峰值传输功率约束。通过采用分数规划,凸壳和概率传输的理论,我们将原始的分数结构的非凸起问题转换为瘾地结构化的参数凸面问题,并通过拉格朗日方法获得给定参数下的最佳功率分配策略。最后,我们通过采用Dinkelbach方法获得最佳平均能效和相应的最佳功率分配方案。仿真结果表明,可以基于PU的延迟QoS要求以及信道条件动态调整我们的派生最佳功率分配策略。还示出了PU延迟QoS要求对传感器节点的能效的影响。

著录项

  • 作者

    Yichen Wang; Wenwen Xu;

  • 作者单位
  • 年度 2016
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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