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Outage Minimization and Rate Allocation for the Multiuser Gaussian Interference Channels With Successive Group Decoding

机译:具有连续组解码的多用户高斯干扰信道的中断最小化和速率分配

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We consider a memoryless Gaussian interference channel (GIC) where $K$ single-antenna users communicate with their respective receivers using Gaussian codebooks. Each receiver employs a successive group decoder with a specified complexity constraint, to decode its designated user. It is aware of the coding schemes employed by all other users and may choose to decode some or all of them only if it deems that doing so will aid the decoding of its desired user. For a GIC with predetermined rates for all transmitters, we obtain the minimum outage probability decoding strategy at each receiver which satisfies the imposed complexity constraint and reveals the optimal subset of interferers that must be decoded along with the desired user. We then consider the rate allocation problem over the GIC under successive group decoding and design a sequential rate allocation algorithm which yields a pareto-optimal rate allocation, and two parallel rate allocation algorithms which yield the symmetric fair rate allocation and the max-min fair rate allocation, respectively. Remarkably, even though the proposed decoding and rate allocation algorithms use “greedy” or myopic subroutines, they achieve globally optimal solutions. Finally, we also propose rate allocation algorithms for a cognitive radio system.
机译:我们考虑一个无记忆的高斯干扰信道(GIC),其中$ K $个单天线用户使用高斯码本与各自的接收器进行通信。每个接收器采用具有指定复杂度约束的连续组解码器来解码其指定用户。它知道所有其他用户采用的编码方案,并且只有在认为这样做有助于其所需用户的解码的情况下,才可以选择对其中的一些或全部进行解码。对于所有发送器都具有预定速率的GIC,我们在每个接收器处获得最小中断概率解码策略,该策略满足施加的复杂性约束,并揭示了必须与所需用户一起解码的最佳干扰子集。然后,我们考虑连续组解码下GIC上的速率分配问题,并设计一个顺序速率分配算法,该算法产生一个最优的速率分配,以及两个并行速率分配算法,该算法产生对称的公平速率分配和最大-最小公平速率分配。值得注意的是,即使建议的解码和速率分配算法使用“贪婪”或近视子例程,它们也可以实现全局最优解。最后,我们还提出了认知无线电系统的速率分配算法。

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