首页> 外文会议>IEEE Workshop on Signal Processing Advances in Wireless Communications >OPTIMUM SCHEDULING FOR ORTHOGONAL MULTIPLE ACCESS OVER FADING CHANNELS USING QUANTIZED CHANNEL STATE INFORMATION
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OPTIMUM SCHEDULING FOR ORTHOGONAL MULTIPLE ACCESS OVER FADING CHANNELS USING QUANTIZED CHANNEL STATE INFORMATION

机译:使用量化信道状态信息的衰落通道上的正交多次访问的最佳调度

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The efficiency of multi-access communications over wireless fading links benefits from channel-adaptive allocation of the available bandwidth and power resources. Different from most existing approaches that allocate resources based on perfect channel state information (P-CSI), this work optimizes channel scheduling and resource allocation over orthogonal fading channels when user terminals and the scheduler rely on quantized channel state information (Q-CSI). The novel unifying approach optimizes an average transmit-performance criterion subject to average quality of service requirements. The resultant optimal policy per fading realization either allocates the entire channel to a single (winner) user, or, to a small group of winner users whose percentage of shared resources is found by solving a linear program. Both alternatives become possible by smoothing the allocation scheme. The smooth policy is asymptotically optimal and incurs reduced computational complexity.
机译:无线衰落链路多访问通信的效率从可用带宽和功率资源的信道自适应分配中受益。与基于完美信道状态信息(P-CSI)分配资源的大多数现有方法不同,当用户终端和调度器依赖量化信道状态信息(Q-CSI)时,该工作优化了通过正交衰落信道的信道调度和资源分配。新颖的统一方法优化了平均传输性能标准,以实现平均服务质量要求。每个衰落实现的结果最佳策略将整个频道分配给单个(获胜者)用户,或者到一小组赢家用户,通过解决线性程序找到共享资源百分比的百分比。通过平滑分配方案,可以实现这两个替代方案。顺利的政策是渐近的最佳状态,并引发减少的计算复杂性。

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