首页> 外文会议>Information Sciences and Systems, 2009. CISS 2009 >Multiuser diversity gain in cognitive networks with distributed spectrum access
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Multiuser diversity gain in cognitive networks with distributed spectrum access

机译:具有分布式频谱访问的认知网络中的多用户分集增益

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Opportunistic allocation of resources to the best link in large multiuser networks offers considerable improvement in spectral efficiency, which is often referred to as multiuser diversity gain and can be cast as double logarithmic growth of the network throughput with the number of users. In this paper we consider large decentralized cognitive networks granted concurrent spectrum access with license-holding users. We assume that the primary network affords to accommodate one secondary user per any under-utilized spectrum band and seek allocating such spectrum bands to a subset of the existing secondary users. We first consider the optimal spectrum-secondary user pairing, which is supervised by a central entity fully aware of the instantaneous channel conditions, and show that the throughput of the cognitive network scales double logarithmically with the number of secondary users (N) and linearly with the number of available spectrum bands (M), i.e. M log log N. Next, we propose a distributed spectrum allocation scheme, which does not necessitate a central controller or any information exchange between different secondary users and obeys the optimal throughput scaling law. This scheme requires that some secondary transmitter-receiver pairs exchange log M information bits among themselves. We also show that the aggregate amount of information exchange between secondary transmitter-receiver secondary pairs is also asymptotically equal to M log M. Finally, we show that our distributed scheme, also guarantees fairness among the secondary users, meaning that they are equally likely to get access to an available spectrum band.
机译:在大型多用户网络中向最佳链路分配资源的机会大大提高了频谱效率,这通常被称为多用户分集增益,并且可以将其转换为网络吞吐量随用户数量的对数增长。在本文中,我们考虑了大型分散式认知网络,该网络被许可持有用户同时访问频谱。我们假设主要网络能够为每个未充分利用的频带提供一个辅助用户,并设法将这些频带分配给现有辅助用户的子集。我们首先考虑最佳频谱-次要用户配对,该配对由一个完全了解瞬时信道条件的中央实体监督,并表明认知网络的吞吐量与次要用户数(N)成对数比例线性增长,并且与可用频谱带的数量(M),即M log logN。接下来,我们提出一种分布式频谱分配方案,该方案不需要中央控制器或不同辅助用户之间的任何信息交换,并且遵循最佳吞吐量缩放定律。该方案要求某些辅助收发器对之间相互交换日志M信息位。我们还表明,辅助发送器-接收器辅助对之间的信息交换总量也渐近地等于M logM。最后,我们证明了我们的分布式方案还保证了辅助用户之间的公平性,这意味着它们同样有可能访问可用的频谱带。

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