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A Minimum Data-rate Guaranteed Resource Allocation With Low Signaling Overhead In Multi-cell Ofdmasystems

机译:多小区通信系统中具有低信令开销的最小数据速率保证资源分配

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In this paper, we investigate how to do resource allocation to guarantee a minimum user data rate at low signaling overhead in multi-cell orthogonal frequency division multiple access (OFDMA) wireless systems. We devise dynamic resource allocation (DRA) algorithms that can minimize the QoS violation ratio (i.e., the ratio of the number of users who fail to get the requested data rate to the total number of users in the overall network). We assume an OFDMA system that allows dynamic control of frequency reuse factor (FRF) of each sub-carrier. The proposed DRA algorithms determine the FRFs of the sub-carriers and allocate them to the users adaptively based on inter-cell interference and load distribution. In order to reduce the signaling overhead, we adopt a hierarchical resource allocation architecture which divides the resource allocation decision into the inter-cell coordinator (ICC) and the base station (BS) levels. We limit the information available at the ICC only to the load of each cell, that is, the total number of sub-carriers required for supporting the data rate requirement of all the users. We then present the DRA with limited coordination (DRA-LC) algorithm where the ICC performs load-adaptive inter-cell resource allocation with the limited information while the BS performs intra-cell resource allocation with full information about its own cell. For performance comparison, we design a centralized algorithm called DRA with full coordination (DRA-FC). Simulation results reveal that the DRA-LC algorithm can perform close to the DRA-FC algorithm at very low signaling overhead. In addition, it turns out to improve the QoS performance of the cell-boundary users, and achieve a better fairness among neighboring cells under non-uniform load distribution.
机译:在本文中,我们研究了如何在多小区正交频分多址(OFDMA)无线系统中以低信令开销进行资源分配以保证最小的用户数据速率。我们设计了一种动态资源分配(DRA)算法,可以将QoS违规率(即,未能获得请求的数据速率的用户数与整个网络中的用户总数之比)降至最低。我们假设一个OFDMA系统允许动态控制每个子载波的频率重用因子(FRF)。提出的DRA算法确定小载波的FRF,并根据小区间干扰和负载分布将其自适应地分配给用户。为了减少信令开销,我们采用了分层资源分配架构,该架构将资源分配决策分为小区间协调器(ICC)和基站(BS)级别。我们将ICC上可用的信息仅限制于每个小区的负载,即支持所有用户的数据速率要求所需的子载波总数。然后,我们提出具有有限协调(DRA-LC)算法的DRA,其中ICC使用有限的信息执行负载自适应小区间资源分配,而BS使用有关其自身小区的完整信息执行小区内资源分配。为了进行性能比较,我们设计了一种称为DRA的集中式算法,具有完全协调性(DRA-FC)。仿真结果表明,DRA-LC算法可以在非常低的信令开销下接近DRA-FC算法。此外,事实证明,在小区负载不均匀的情况下,可以提高小区边界用户的QoS性能,并在相邻小区之间实现更好的公平性。

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