Saha Rony Kumer
Radio and Spectrum Laboratory, KDDI Research Inc., 2-1-15 Ohara, Fujimino-shi, Saitama 356-8502, Japan.
Sensors (Basel). 2020 Jul 17;20(14):3979. doi: 10.3390/s20143979.
In this paper, we propose a hybrid interweave-underlay spectrum access and reuse technique for the dynamic spectrum access and reuse of the countrywide 28 GHz millimeter-wave (mmWave) spectrum to in-building small cells of each mobile network operator (MNO) in a country. For the spectrum access, the proposed technique explores both interweave and underlay spectrum access techniques, whereas, for the spectrum reuse, it considers reusing the countrywide spectrum to each three-dimensional (3D) cluster of small cells in a building. To access the countrywide spectrum, each MNO is considered by paying a licensing fee following its number of subscribers. We present the 3D clustering of in-building of small cells and derive average capacity, spectral efficiency (SE), and energy efficiency (EE). We then perform extensive numerical and simulation results and analyses for an MNO of a country consisting of four MNOs. It is shown that, for no spectrum reuse to in-building small cells, the proposed technique improves average capacity and SE by 3.63 and 2.42 times, respectively, whereas EE improves by 72.79%. However, for vertical spatial reuse of six times (as an example) to small cells in a building, average capacity, SE, and EE improve further by 21.77 times, 14.51 times, and 95.66%, respectively. Moreover, the proposed technique can satisfy SE and EE requirements for sixth-generation (6G) mobile systems by horizontal spatial reuse of the countrywide spectrum to small cells of about 40.62%, 9.37%, and 6.25% less buildings than that required by the traditional static licensed spectrum access (SLSA) technique.
在本文中,我们提出了一种混合交织 - 底层频谱接入与复用技术,用于在一个国家内将全国范围的28吉赫兹毫米波(mmWave)频谱动态接入并复用至每个移动网络运营商(MNO)的室内小蜂窝基站。对于频谱接入,该技术同时探索交织和底层频谱接入技术;而对于频谱复用,它考虑将全国频谱复用到建筑物内的每个三维(3D)小蜂窝基站集群。为了接入全国频谱,每个MNO根据其用户数量支付许可费用。我们展示了室内小蜂窝基站的3D聚类,并推导了平均容量、频谱效率(SE)和能量效率(EE)。然后,我们对一个由四个MNO组成的国家中的一个MNO进行了广泛的数值和仿真结果及分析。结果表明,对于不对室内小蜂窝基站进行频谱复用的情况,所提技术分别将平均容量和SE提高了3.63倍和2.42倍,而EE提高了72.79%。然而,对于建筑物内小蜂窝基站进行六次垂直空间复用(举例)的情况,平均容量、SE和EE分别进一步提高了21.77倍、14.51倍和95.66%。此外,通过将全国频谱水平空间复用至小蜂窝基站,所提技术能够满足第六代(6G)移动系统的SE和EE要求,相比传统静态授权频谱接入(SLSA)技术所需的建筑物数量,减少了约40.62%、9.37%和6.25%。