受吞吐量约束的基于最优效用的多用户吞吐量分配

M. Andrews, Lijun Qian, A. Stolyar
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引用次数: 193

摘要

研究了多用户共享时变无线信道的调度问题。(例如,这是3G无线技术中的调度模型,例如CDMA2000 3G1xEV-DO下行链路调度。)我们介绍了一种算法,该算法旨在优化用户吞吐量R/sub i/的凹效用函数/spl Sigma//sub i/H/sub i/(R/sub i/),受制于一定的上下吞吐量界限:R/sub i//sup min//spl les/R/sub i//spl les/R/sub i//sup max/。该算法称为带最小/最大速率约束的梯度算法(GMR),该算法使用令牌计数器机制,该机制修改了解决相应无约束问题的算法,从而产生了解决带吞吐量约束问题的算法。效用函数的两个重要特例是/spl Sigma//下标i/log R/下标i/和/spl Sigma//下标i/R/下标i/,对应于常见的比例公平和吞吐量最大化目标。我们研究了GMR算法下用户吞吐量的动态变化,并证明了GMR算法在以下意义上是渐近最优的。如果在适当的缩放下,吞吐量向量R(t)在时间t/spl rarr//spl infin/时收敛于固定向量R/sup +/,则R/sup +/是上述优化问题的最优解。仿真结果显示了该算法的性能。
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Optimal utility based multi-user throughput allocation subject to throughput constraints
We consider the problem of scheduling multiple users sharing a time-varying wireless channel. (As an example, this is a model of scheduling in 3G wireless technologies, such as CDMA2000 3G1xEV-DO downlink scheduling.) We introduce an algorithm which seeks to optimize a concave utility function /spl Sigma//sub i/H/sub i/(R/sub i/) of the user throughputs R/sub i/, subject to certain lower and upper throughput bounds: R/sub i//sup min//spl les/R/sub i//spl les/R/sub i//sup max/. The algorithm, which we call the gradient algorithm with minimum/maximum rate constraints (GMR) uses a token counter mechanism, which modifies an algorithm solving the corresponding unconstrained problem, to produce the algorithm solving the problem with throughput constraints. Two important special cases of the utility functions are /spl Sigma//sub i/log R/sub i/ and /spl Sigma//sub i/R/sub i/, corresponding to the common proportional fairness and throughput maximization objectives. We study the dynamics of user throughputs under GMR algorithm, and show that GMR is asymptotically optimal in the following sense. If, under an appropriate scaling, the throughput vector R(t) converges to a fixed vector R/sup +/ as time t/spl rarr//spl infin/ then R/sup +/ is an optimal solution to the optimization problem described above. We also present simulation results showing the algorithm performance.
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