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Modelling heterogeneous future wireless cellular networks: An analytical study for interaction of 5G femtocells and macro-cells

机译:建模异构未来无线蜂窝网络:5G毫微微蜂窝和宏观细胞相互作用的分析研究

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The unprecedented growth in the number of mobile nodes, connected devices, and data traffic lead to the dense deployment of fifth generation (5G) networks. In such networks, small cells or femtocells are becoming quite popular mainly because of their features such as consistent coverage regardless of the location, transmit power adjustment, energy efficiency, and their ability of providing higher data rates compared to traditional cellular networks. Although the number of femtocells in a heterogeneous cellular network environment can be increased with an aim of satisfying high data traffic in next-generation 5G networks, higher numbers of small cell deployments may result in unnecessary, and frequent handovers. Therefore, the need for improvement and optimization of femtocell handover paradigms as well as their coexistence with other technologies should be investigated in the era of 5G cellular networks. This study proposes an analytical model which can be used to analyse integrated heterogeneous wireless cellular networks which consist femtocells. Integration of fourth and fifth generation wireless cellular systems is considered for this purpose. The state diagram of the proposed model can be represented by a two dimensional Markov Chain. A new, novel decomposition approach is employed for solving the system for state probabilities and to obtain performance measures such as mean queue length, throughput and response time. The main advantage of the new solution method is its capability of considering interaction of two systems with large queuing capacities unlike the existing matrix based solution approaches such as spectral expansion and matrix geometric methods. The proposed analytical solution approach has been validated using simulation and a system of simultaneous equations.
机译:移动节点,连接设备和数据流量的数量前所未有的增长导致第五代(5G)网络的密集部署。在这种网络中,小区或毫微微小区的主要是流行的,主要是因为它们的特征,例如无论位置,传输功率调整,能量效率以及与传统的蜂窝网络相比提供更高数据速率的能力。尽管可以增加异构蜂窝网络环境中的毫微微蜂窝的数量,其目的是满足下一代5G网络中的高数据流量,但是较高的小单元部署可能导致不必要和频繁的切换。因此,在5G蜂窝网络的时代,应研究对毫微微小区切换范例以及与其他技术的改进和优化的需求以及与其他技术的共存。本研究提出了一种分析模型,可用于分析集成的非均质无线蜂窝网络,该网络组成了毫小粒子。为此目的考虑了第四代和第五代无线蜂窝系统的集成。所提出的模型的状态图可以由二维马尔可夫链表示。采用新的新型分解方法来解决状态概率并获得诸如平均队列长度,吞吐量和响应时间之类的性能测量。新的解决方案方法的主要优点是其考虑两个系统的相互作用,其具有大量排队能力,与现有的基于矩阵的解决方案方法等诸如光谱膨胀和矩阵几何方法。使用模拟和同时方程系统验证了所提出的分析解决方法。

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