Rate allocation in multiuser cognitive radio systems with successive group decoding

N. Prasad, Xiaodong Wang
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引用次数: 4

Abstract

We consider the problem of rate allocation in classical as well as generalized multiuser cognitive radio systems. Each user intends to communicate with its designated receiver and all receivers employ successive group decoders with specified complexity constraints. Rate allocations in the classical case are obtained by using algorithms designed for a fi user Gaussian Interference Channel (GIC). In the generalized cognitive radio system the transmission rates of the primary users are assumed to be pre-determined such that each primary user is decodable at its (primary) receiver in the GIC consisting only of the primary transmitter-receiver pairs. We investigate the problem of selecting an active set of secondary users that are allowed to co-exist with the primary users and allocating rates to them under the constraints that each primary user achieves its pre-determined rate and no primary receiver decodes any secondary user. Each secondary receiver however is free to decode any other user whose codebook it is aware of. The key feature of the rate allocation algorithms we design is that inspite of using distributed and low-complexity ldquogreedyrdquo sub-routines, they can achieve globally optimal solutions.
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连续群译码多用户认知无线电系统的速率分配
研究了经典多用户认知无线电系统和广义多用户认知无线电系统的速率分配问题。每个用户都打算与其指定的接收器通信,所有接收器都使用具有指定复杂性约束的连续组解码器。经典情况下的速率分配是采用针对fi用户高斯干扰信道设计的算法来实现的。在广义认知无线电系统中,假定主要用户的传输速率是预先确定的,使得每个主要用户在仅由主要发送-接收对组成的GIC中的其(主要)接收器上可解码。我们研究了在每个主用户达到其预定速率且主接收端不解码任何辅助用户的约束下,选择一组允许与主用户共存的活跃辅助用户并为其分配速率的问题。然而,每个辅助接收器可以自由地解码它所知道的任何其他用户的密码本。我们设计的速率分配算法的关键特点是,尽管使用分布式和低复杂度的ldquogreedyrdquo子例程,但它们可以获得全局最优解。
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