Integrated link adaptation and power control for wireless IP networks

K. K. Leung, L.-C. Wang
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引用次数: 24

Abstract

In this paper, we prove that the problem of maximizing data throughput by adaptive modulation and power control while meeting packet error requirements is NP-complete. A heuristic algorithm for integrated link adaptation and power control is thus proposed to achieve specified error rates and to improve overall throughput for real-time applications in wireless IP networks. The algorithm divides terminals into groups according to their signal path gains, and periodically adapts transmissions based on the required error rates, actual error statistics and average transmission power of each terminal group. Transmission power is adjusted by an enhanced Kalman-filter method to ensure successful reception. Simulation results reveal that the algorithm consistently delivers the specified error performance, and attempts to maximize network throughput for a wide range of parameter settings.
无线IP网络的集成链路自适应和功率控制
在本文中,我们证明了在满足分组误差要求的情况下,通过自适应调制和功率控制来最大化数据吞吐量的问题是np完全的。为此,提出了一种集成链路自适应和功率控制的启发式算法,以实现指定的错误率,并提高无线IP网络实时应用的总体吞吐量。该算法根据终端的信号路径增益将终端分组,并根据每组终端所需的误码率、实际误码率统计值和平均传输功率周期性地进行传输适配。通过增强的卡尔曼滤波方法调节发射功率,确保接收成功。仿真结果表明,该算法始终提供指定的错误性能,并尝试在广泛的参数设置下最大化网络吞吐量。
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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