Payoff-oriented quantization and application to power control

Chao Zhang, Nizar Khalfet, S. Lasaulce, V. Varma, S. Tarbouriech
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引用次数: 5

Abstract

In many resource allocation problems, optimal allocation strategies must be determined when only a quantized version of the relevant parameters are available, for instance, power allocation in wireless communications. The contribution of this work is threefold. First, the quantization problem is revisited and a framework which encompasses the classical problem of quantization is proposed. Instead of minimizing the distortion, the goal is to minimize the gap between the maximum of a general payoff function (which would be reached by knowing all parameters of the function) and what is effectively reached when only the quantized version of the parameters is available. Then, to determine such a quantizer, the well-known Lloyd-Max algorithm is generalized. At last, we show how this framework can be applied to the problem of power control in wireless communications; the obtained numerical results clearly show the potential of such a framework.
面向收益的量化及其在功率控制中的应用
在许多资源分配问题中,当只有量化的相关参数可用时,必须确定最优分配策略,例如无线通信中的功率分配问题。这项工作的贡献是三重的。首先,对量化问题进行了回顾,并提出了一个包含经典量化问题的框架。我们的目标不是最小化扭曲,而是最小化一般收益函数的最大值(通过知道函数的所有参数可以达到)与只有参数的量化版本可用时有效达到的最大值之间的差距。然后,为了确定这样的量化器,推广了著名的Lloyd-Max算法。最后,我们展示了如何将该框架应用于无线通信中的功率控制问题;得到的数值结果清楚地显示了这种框架的潜力。
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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