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Efficient power and admission control in multi-cell cognitive radio networks employing hybrid users

机译:采用混合用户的多电池认知无线电网络中的高效电力和准入控制

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摘要

A recent class of cognitive user that can emerge and change the future of cognitive radio networks (CRNs) is hybrid user (HU). HU is an advanced primary user that is armed with cognitive functions to benefit greatly from CRN. In this paper, we aim to propose a framework to employ this type of users in CRNs. In this regard, we introduce a modified multi-cell CRN (MMCRN) based on HUs. In conventional MCRN (CMCRN), each user connects to its own base station (BS); however, in MMCRN, it is possible for HUs to exploit the secondary network. To construct the MMCRN, a BS assignment algorithm is proposed to assign the HUs to proper BSs. Afterwards, in an infeasible MMCRN, the problem of maximizing the number of admitted SUs is studied and a novel algorithm is presented. Furthermore, sum-throughput maximization of SUs is investigated in a feasible MMCRN. Finally, we modify our schemes considering channel gain uncertainty and propose algorithms that are robust against channel gain fluctuation. It is theoretically presented that our proposed schemes can significantly improve the efficiency of the network. The extensive simulations also verify the superior efficiency of MMCRN compared to CMCRN.
机译:最近一类可以出现和改变认知无线电网络(CRNS)的未来的认知用户是混合用户(HU)。胡是一个先进的主要用户,武装认知功能,从CRN中受益匪浅。在本文中,我们的目标是提出框架,以在CRN中使用这种类型的用户。在这方面,我们介绍了基于HUS的改进的多单元CRN(MMCRN)。在传统的MCRN(CMCRN)中,每个用户连接到其自己的基站(BS);但是,在MMCRN中,HUS可以利用二级网络。为了构建MMCRN,提出了BS分配算法以将HUS分配给适当的BSS。之后,在一个不可行的MMCRN中,研究了最大化所录取的SU的数量并提出了一种新颖算法。此外,在可行的MMCRN中研究了SUS的总和最大化。最后,考虑频道增益不确定性并提出对信道增益波动的强大的不确定性和提出算法来修改我们的计划。理论上,我们的提出方案可以显着提高网络的效率。与CMCRN相比,广泛的模拟还验证了MMCRN的卓越效率。

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