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Network Efficient Power Control for Wireless Communication Systems

机译:无线通信系统的网络有效功率控制

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摘要

We introduce a two-loop power control that allows an efficient use of the overall power resources for commercial wireless networks based on cross-layer optimization. This approach maximizes the network's utility in the outer-loop as a function of the averaged signal to interference-plus-noise ratio (SINR) by considering adaptively the changes in the network characteristics. For this purpose, the concavity property of the utility function was verified with respect to the SINR, and an iterative search was proposed with guaranteed convergence. In addition, the outer-loop is in charge of selecting the detector that minimizes the overall power consumption (transmission and detection). Next the inner-loop implements a feedback power control in order to achieve the optimal SINR in the transmissions despite channel variations and roundtrip delays. In our proposal, the utility maximization process and detector selection and feedback power control are decoupled problems, and as a result, these strategies are implemented at two different time scales in the two-loop framework. Simulation results show that substantial utility gains may be achieved by improving the power management in the wireless network.
机译:我们介绍了一种双回路功率控制,该控制允许基于跨层优化为商用无线网络有效利用整体功率资源。通过自适应地考虑网络特性的变化,此方法可根据平均信号与干扰加噪声比(SINR)的函数,最大化网络在外环中的效用。为此,针对SINR验证了效用函数的凹性,并提出了具有收敛保证的迭代搜索。此外,外环负责选择使总功耗(传输和检测)最小化的检测器。接下来,尽管存在信道变化和往返延迟,内环仍将执行反馈功率控制,以在传输中实现最佳SINR。在我们的建议中,效用最大化过程和检测器选择以及反馈功率控制是解耦的问题,因此,这些策略在双回路框架中以两个不同的时间尺度实施。仿真结果表明,可以通过改善无线网络中的电源管理来获得可观的效用收益。

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