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Multi-criteria Handover Decision for Heterogeneous Networks: Carrier Aggregation Deployment Scenario

机译:异构网络的多标准切换决策:载波聚合部署方案

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Carrier aggregation and integration of heterogeneous networks allow the mobile user equipment to benefit from wider bandwidth and radio coverage of different access technologies. However, these technologies have increased handoff scenario probability through user equipmenta??s mobility, leading to high outage probability and low throughput. Handover is an important aspect of mobility management which allows users to migrate from one cell to another without losing connections. But no lone access technology meets the requirements of providing seamless communication without loss and delay. Therefore, high-quality service continuity and reliable user equipment access to network anywhere and at any time require the design of an appropriate handover decision algorithm. In this paper, a multi-criteria based handover decision-making algorithm is proposed to evade loss of communication and provide better performance to the system. It adaptively makes handover decisions based on different decision criteria (load, availability of resources, and the handover scenario type) in addition to signal interference to noise ratio. The multicriteria handover decision making algorithm-based method chooses among the cells that satisfy the requirements for the handover. As compared to some existing handover decision algorithms, simulation result shows that this algorithm improves system performance in terms of handover failure by 93%, 72%, and 58%; radio link failure reduction by 77%, 43%, and 22%; and handover pinga?"pong by 81%, 59%, and 36% over the conventional received signal strength, received wireless transmission line, and multiinfluence factor hand over decisions respectively.
机译:异构网络的载波聚合和集成允许移动用户设备从更广泛的带宽和不同访问技术的无线电覆盖中受益。然而,这些技术通过用户设备的移动性提高了切换场景概率,从而导致高中的中断概率和低吞吐量。切换是移动管理的一个重要方面,其允许用户从一个小区迁移到另一个小区而不会丢失连接。但没有单独的访问技术符合无需损失和延迟提供无缝通信的要求。因此,高质量的服务连续性和可靠的用户设备访问网络随时随地,随时都需要设计适当的切换决策算法。在本文中,提出了一种基于多标准的切换决策算法来逃避通信丢失并对系统提供更好的性能。除了信号干扰噪声比之外,它还可根据不同的决策标准(资源,资源的可用性和切换方案类型)自适应地进行切换决策。基于多轨道切换决策的算法的方法在满足切换要求的单元中选择。与某些现有的切换决策算法相比,仿真结果表明,该算法在切换故障方面提高了93%,72%和58%的系统性能;无线电链路故障减少77%,43%和22%;切换平坦?“乒乓球增长81%,59%,以及36%的传统接收信号强度,接收无线传输线路和多线流因子分别交给决定。

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