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首页> 外文期刊>IEEE Transactions on Vehicular Technology >Limited-Feedback Resource Allocation in Heterogeneous Cellular Networks
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Limited-Feedback Resource Allocation in Heterogeneous Cellular Networks

机译:异构蜂窝网络中的有限反馈资源分配

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In this paper, we develop and analyze three limited-feedback resource allocation algorithms suitable for uplink transmission in heterogeneous wireless networks (HetNets). In this setup, one macro-cell shares the spectrum with a set of underlay cognitive small-cells via the orthogonal frequency-division multiple access (OFDMA), where the interference from small-cells to the macro-cell should be kept below a predefined threshold. The resource allocation algorithms aim to maximize the weighted sum of instantaneous rates of all users over all cells by jointly optimizing power and subcarrier allocation under power constraints. Since in practice, the HetNet backhaul capacity is limited, reducing the amount of channel state information (CSI) feedback signaling passed over the backhaul links is highly desirable. To reach this goal, we apply the Lloyd algorithm to develop the limited-feedback two-phase resource allocation scheme. In the first , an optimal codebook for power and subcarrier allocation is designed and sent to all nodes. In the second , based on channel realizations, the appropriate codeword of the designed codebook is chosen for transmission parameters, and the macro-cell only sends the codeword index represented by a limited number of bits for subcarrier and power allocation to its own users and small-cells. Then, each small-cell informs its own users by their related codewords. The offline phase involves a mixed-integer nonconvex resource allocation problem encountering high computational complexity. To solve it efficiently, we apply the general iterative successive convex approximation (SCA) approach, where the nonconvex optimization problem is transformed into the approximated convex optimization problem in each iteration. The simulation results reveal that the Lloyd algorithm can offer a performance close to the perfect-CSI case (without a limited number of feedback bits).
机译:在本文中,我们开发并分析了三种适用于异构无线网络(HetNets)中上行链路传输的有限反馈资源分配算法。在此设置中,一个宏小区通过正交频分多址(OFDMA)与一组底层认知小小区共享频谱,其中从小小区到宏小区的干扰应保持在预定义以下阈。资源分配算法旨在通过共同优化功率和子载波在功率约束下的分配来最大化所有小区上所有用户的瞬时速率的加权总和。由于实际上,HetNet回程容量受到限制,因此非常需要减少通过回程链路传递的信道状态信息(CSI)反馈信令的数量。为了达到这个目标,我们应用Lloyd算法来开发有限反馈两阶段资源分配方案。首先,设计用于功率和子载波分配的最佳码本,并将其发送到所有节点。在第二种方法中,基于信道实现,选择设计码本的适当码字作为传输参数,宏小区仅将由有限位数表示的码字索引发送给子载波和功率分配给自己的用户, -细胞。然后,每个小型小区通过其相关的码字通知其自己的用户。脱机阶段涉及遇到高计算复杂性的混合整数非凸资源分配问题。为了有效地解决此问题,我们应用了一般的迭代连续凸逼近法(SCA),其中在每次迭代中将非凸优化问题转化为逼近凸优化问题。仿真结果表明,劳埃德算法可以提供接近完美CSI情况的性能(没有有限的反馈位数)。

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