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首页> 外文期刊>IEICE Transactions on fundamentals of electronics, communications & computer sciences >Interference Coordination in Compact Frequency Reuse for Multihop Cellular Networks
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Interference Coordination in Compact Frequency Reuse for Multihop Cellular Networks

机译:多跳蜂窝网络紧凑频率复用中的干扰协调

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Continuously increasing the bandwidth to enhance the capacity is impractical because of the scarcity of spectrum availability. For-tunately, on the basis of the characteristics of the multihop cellular networks (MCNs), a new compact frequency reuse scheme has been proposed to provide higher spectrum utilization efficiency and larger capacity without increasing the cost on network. Base stations (BSs) and relay stations (RSs) could transmit simultaneously on the same frequency according to the compact frequency reuse scheme. In this situation, however, mobile stations (MSs) near the coverage boundary will suffer serious interference and their traffic quality can hardly be guaranteed. In order to mitigate the interference while maintaining high spectrum utilization efficiency, this paper introduces a fractional frequency reuse (FFR) scheme into multihop cellular networks, in which the principle of FFR scheme and characteristics of frequency resources configurations are described, then the transmission (Tx) power consumption of BS and RSs is analyzed. The proposed scheme can both meet the requirement of high traffic load in future cellular system and maximize the benefit by reducing the Tx power consumption. Numerical results demonstrate that the proposed FFR in compact frequency reuse achieves higher cell coverage probability and larger capacity with respect to the conventional schemes.
机译:由于频谱可用性的缺乏,不断增加带宽以增强容量是不切实际的。幸运的是,基于多跳蜂窝网络(MCN)的特性,已经提出了一种新的紧凑型频率复用方案,以在不增加网络成本的情况下提供更高的频谱利用率和更大的容量。基站(BS)和中继站(RS)可以根据紧凑的频率重用方案在相同的频率上同时发送。但是,在这种情况下,覆盖范围边界附近的移动站(MS)将遭受严重的干扰,并且其流量质量几乎无法得到保证。为了在保持较高频谱利用率的同时减轻干扰,本文将分数频率复用(FFR)方案引入多跳蜂窝网络,其中描述了FFR方案的原理和频率资源配置的特征,然后介绍了传输(Tx)。 )分析了BS和RS的功耗。所提出的方案既可以满足未来蜂窝系统中高流量负载的要求,又可以通过降低Tx功耗来最大程度地提高收益。数值结果表明,相对于传统方案,所提出的紧凑频率复用中的FFR实现了更高的小区覆盖概率和更大的容量。

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