Channel selection in dynamic networks of unknown size

Rohit Kumar, S. Darak
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Abstract

The dynamic spectrum access (DSA) algorithms aim to maximize network throughput by ensuring orthogonal channel allocation among secondary users (SUs) in cognitive radio network. Most of the existing DSA algorithms need prior knowledge of the number of active SUs and thus may not be suitable for battery operated resource constrained SU terminals in the infrastructure-less cognitive radio terminals. Another drawback of these algorithms is that they assume the static network with a fixed number of SUs in the network throughout the horizon and their extension for dynamic network in which SUs may enter or exit the network anytime is challenging. Thus, our goal is to design the DSA algorithms for the dynamic networks of unknown size.
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未知大小动态网络中的信道选择
在认知无线网络中,动态频谱接入(DSA)算法通过保证辅助用户间信道的正交分配来实现网络吞吐量的最大化。现有的大多数DSA算法需要事先知道活动单元的数量,因此可能不适合在无基础设施的认知无线电终端中使用电池供电的资源受限的单元终端。这些算法的另一个缺点是,它们假设在整个视界中具有固定数量的网络单元的静态网络,并且它们对动态网络中的单元可以随时进入或退出网络的扩展具有挑战性。因此,我们的目标是为未知大小的动态网络设计DSA算法。
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