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The use of mobile positioning supported traffic density measurements to assist load balancing methods based on adaptive cell sizing

机译:使用移动定位支持的业务密度测量以帮助基于自适应电池尺寸的负载平衡方法

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Traffic loads and local user densities in mobile radio networks vary, resulting in temporarily overloaded cells. To reduce their call or handover blocking rates, three basic methods of balancing the spatial traffic load are presented. The key principle is to modify the coverage area of radio cells: Adapting the handover hysteresis, a threshold used at call setup, that balances the reception power levels used for the decision in which cell to book in. changing the beam widths of the BCCH- or pilot carrier (sector characteristic) in a system with smart antennas. A manager-agent architecture is introduced to solve the network optimisation problem, based on quality and traffic measurements This architecture is extended to include interfaces to a mobile positioning system with the goal to support traffic measurements in real environments.
机译:移动无线电网络中的流量负载和本地用户密度各不相同,导致暂时过载的单元格。为减少呼叫或切换阻塞速率,提出了三种平衡空间交通负荷的三种基本方法。关键原则是修改无线电小区的覆盖区域:调整切换滞后,呼叫设置中使用的阈值,这使得余额为用于预订的电池的决定。改变BCCH的光束宽度 - 或者在具有智能天线的系统中的导载载体(扇区特征)。引入了管理员架构以解决网络优化问题,基于质量和流量测量,此架构扩展到包括对移动定位系统的接口,以支持真实环境中的业务测量。

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