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Channel State-Aware Joint Dynamic Cell Coordination Scheme Using Adaptive Modulation and Variable Reuse Factor in OFDMA Downlink

机译:信道状态感知联合动态单元协调方案使用OFDMA下行链路中的自适应调制和可变重用因子

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摘要

In this paper, two different dynamic cell coordination strat-agies for frequency selective and flat fading are proposed for efficient subcarrier allocation in the joint consideration of adaptive modulation and variable frequency reuse in the channel-aware OFDMA downlink multicellular environment. Compared to a conventional OFDMA system without cell coordination, where system throughput may become degraded due to the persistent interference from other cells, the proposed system dynamically allows RNC to apply different reuse factors on each subchannel and scheduling in consideration of channel and interference conditions of individual users so as to increase the system throughput and guarantee QoS of each user. In a selective fading channel, the proposed schemes showed 2.6 times as large throughput as that of a single reuse factor of one for all subcarriers. In a frequency flat fading, the dynamic scheme with the proposed scheduling achieves on average three times larger throughput than the conventional dynamic scheme.
机译:在本文中,提出了用于频率选择性和扁平衰落的两个不同动态小区协调频率,以便在通道感知的频道感知DMMS下行链路多细胞环境中的共同考虑自适应调制和可变频率重用中的有效子载波分配。与没有细胞协调的传统OFDMA系统相比,当系统吞吐量可能由于来自其他小区的持续干扰而变得劣化,所提出的系统动态允许RNC在每个子信道上应用不同的重用因子,并考虑个人的信道和干扰条件来调度用户以增加系统吞吐量并保证每个用户的QoS。在一个选择性衰落通道中,所提出的方案显示出大量吞吐量的2.6倍,作为所有子载波的单个重用因子的吞吐量。在频率扁平衰落中,具有所提出的调度的动态方案平均吞吐量比传统动态方案平均三倍。

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