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首页> 外文期刊>Vehicular Technology, IEEE Transactions on >Optimizing the Coexistence Performance of Secondary-User Networks Under Primary-User Constraints for Dynamic Spectrum Access
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Optimizing the Coexistence Performance of Secondary-User Networks Under Primary-User Constraints for Dynamic Spectrum Access

机译:在动态频谱接入的主要用户约束下优化次要用户网络的共存性能

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In this paper, we address the following two types of coexistence between wireless networks: 1) coexistence among secondary user (SU) networks and 2) coexistence between primary user (PU) and SU networks. The former type addresses the sharing of a common spectrum opportunity among SU networks to achieve an efficient spectrum usage, whereas the latter type addresses the interference from SUs to PUs. Following the trend of spectrum regulations and industrial standardization, we postulate a potential deployment scenario and describe the management procedure of SU networks under the interference constraints to the PU receivers. For the quantitative evaluation of coexistence, we first propose a new parameter called the quality of coexistence ( QoC). Then, we introduce a novel coexistence scheme called interference-constrained time slot splitting and allocation. In addition, we derive the distribution of the interference to the PU receiver caused by SU transmitters weighted by the time slot fraction assigned to each SU network. After optimizing individual SU transmission under the PU interference constraint, we use the analytical model as a basis to obtain the optimal time slot allocation ratios of multiple SU networks by maximizing the aforementioned QoC. This leads to an efficient spectrum usage by SUs without incurring harmful interference to the PUs. Finally, we compare the proposed scheme with other schemes that select a single SU network to operate based on simplistic criteria. It is shown that when the SU network employs adaptive transmit power control, the medium value of QoC is doubled using the optimal time slot allocation, resulting in significant improvement in coexistence.
机译:在本文中,我们解决了无线网络之间的以下两种共存类型:1)次用户(SU)网络之间的共存,以及2)主用户(PU)和SU网络之间的共存。前一种类型解决了SU网络之间共享公用频谱机会以实现有效频谱使用的问题,而后一种类型解决了SU之间对PU的干扰。遵循频谱法规和工业标准化的趋势,我们提出了一个潜在的部署方案,并描述了在受PU接收机干扰的情况下SU网络的管理过程。对于共存的定量评估,我们首先提出一个新参数,称为共存质量(QoC)。然后,我们介绍了一种新的共存方案,称为干扰约束时隙拆分和分配。此外,我们推导了SU发射机对PU接收机造成的干扰分布,该发射机由分配给每个SU网络的时隙分数加权。在PU干扰约束下优化单个SU传输之后,我们使用分析模型作为基础,通过最大化上述QoC来获得多个SU网络的最佳时隙分配比。这导致SU高效使用频谱,而不会对PU造成有害干扰。最后,我们将提出的方案与基于简单准则选择单个SU网络进行操作的其他方案进行比较。结果表明,当SU网络采用自适应发射功率控制时,使用最佳时隙分配可使QoC的中间值翻倍,从而显着改善共存性。

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