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首页> 外文期刊>Telecommunication systems: Modeling, Analysis, Design and Management >Impacts of air interface admission control and user mobility on UTRAN transport simulations
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Impacts of air interface admission control and user mobility on UTRAN transport simulations

机译:空口准入控制和用户移动性对UTRAN传输模拟的影响

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摘要

UMTS Terrestrial Radio Access Network (UTRAN) Transport Network Layer dimensioning has been of great interest among network researchers and planners due to the limit of Iub bandwidth. This paper investigates the potential impacts caused by Connection Admission Control (CAC) mechanism of the air interface and User Mobility (UM) on simulations carried out for the UTRAN transport network domain. Independent from the TNL CAC mechanism of the transport network which is in charge of Iub link bandwidth, the Radio CAC function deals with the highly non-linear resources needed for an attempted connection depending on its specific propagation and interference situation. The consideration of the air interface acting as bottleneck results into a less challenging amount of traffic for the transport domain. In addition, mobile user behaviors, e.g. UM, may dynamically change traffic load at the air interface, and in consequence affect Iub load, which has a very close correlation with cell load. In this work, a simulation model with Radio CAC mechanism and Handover strategies is implemented to study this correlation, and evaluate the UTRAN transport network performance given a limited radio capacity. The analysis on the impacts of the Radio CAC and UM are derived from qualitative simulations.
机译:由于Iub带宽的限制,UMTS地面无线电接入网(UTRAN)传输网络层的尺寸设计已引起网络研究人员和规划人员的极大兴趣。本文研究了空中接口的连接准入控制(CAC)机制和用户移动性(UM)对在UTRAN传输网络域进行的仿真的潜在影响。独立于负责Iub链路带宽的传输网络的TNL CAC机制,无线电CAC功能根据其特定的传播和干扰情况来处理尝试连接所需的高度非线性资源。空中接口充当瓶颈的考虑导致传输域的通信量挑战性降低。另外,移动用户的行为,例如UM可能会动态更改空中接口的流量负载,从而影响Iub负载,而Iub负载与小区负载有着非常紧密的关联。在这项工作中,采用带有无线电CAC机制和切换策略的仿真模型来研究这种相关性,并在给定的无线电容量有限的情况下评估UTRAN传输网络的性能。对无线电CAC和UM的影响的分析是从定性模拟中得出的。

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