Self-optimization of power parameters in WCDMA networks

Harrison Mfula, T. Isotalo, J. Nurminen
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引用次数: 4

Abstract

Network optimization is used by operators to maximize return on investment and to ensure customer satisfaction with the quality of the delivered service. Coverage and capacity are the most important characteristics of any cellular network. In WCDMA networks, the pilot signal of a cell is used to determine the cell size, hence it can be used to determine the coverage area of the cell. Increasing or reducing the cell pilot power increases or reduces the cell size respectively and hence pilot power can be used to balance load among neighboring cells. As networks continue to evolve, the frequency of optimization and number of tunable parameters continues to increase making manual optimization challenging. This paper presents a practical solution to the pilot power optimization problem in WCDMA networks and addresses the issue of rising optimization complexity by presenting a self-optimization based algorithm for tuning pilot power. When running in closed loop, the algorithm can be used to autonomously optimize pilot power and load balance traffic in the network. When scheduled or triggered manually, the algorithm can also be used to improve network capacity in areas expecting high traffic load during a certain time for example during social gatherings.
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WCDMA网络中功率参数的自优化
网络优化是运营商用来最大化投资回报和确保客户对所提供服务质量满意的方法。覆盖范围和容量是蜂窝网络最重要的特征。在WCDMA网络中,小区的导频信号用于确定小区的大小,因此可用于确定小区的覆盖区域。增加或减少导频功率分别增加或减小单元尺寸,因此导频功率可用于平衡相邻单元之间的负载。随着网络的不断发展,优化的频率和可调参数的数量不断增加,使得手动优化具有挑战性。本文针对WCDMA网络中导频功率优化问题提出了一种实用的解决方案,并提出了一种基于自优化的导频功率调整算法,解决了优化复杂度上升的问题。在闭环运行时,该算法可以自动优化导频功率,实现网络流量的负载均衡。当调度或手动触发时,该算法还可以用于在特定时间(例如社交聚会期间)预计高流量负载的区域提高网络容量。
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