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Pilot power optimization and coverage control in WCDMA mobile networks

机译:WCDMA移动网络中的导频功率优化和覆盖控制

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In mobile networks using wideband code division multiple access (WCDMA), common pilot channel (CPICH) signals are used by mobile terminals for channel quality estimation, cell selection, and handover. The strength of the CPICH signal determines the coverage area of the cell, impacts the network capacity, and thereby the quality of service, and is therefore a crucial parameter in network planning and optimization. Pilot power is the most important parameter that allows us to control the strength of the CPICH signal. The more power is spent for pilot signals, the better coverage is obtained. On the other hand, a higher value of the pilot power level in a cell means higher pilot pollution in the network and less power available to serve user traffic in the cell. In this paper, we consider the problem of minimizing the total amount of pilot power subject to a coverage constraint. Our modeling and solution approaches are based on mathematical programming techniques. We present a basic model for pilot power optimization subject to a full coverage constraint as well as its extended version which allows us to study various coverage levels and to consider user traffic distribution over the network. We also propose an efficient algorithm that gives near-optimal solutions to the problem within a reasonable amount of time. We report our numerical experiments for three WCDMA networks of various sizes based on realistic planning scenarios and examine the effect of different levels of the required coverage degree on the total amount of pilot power.
机译:在使用宽带码分多址(WCDMA)的移动网络中,移动终端将公共导频信道(CPICH)信号用于信道质量估计,小区选择和切换。 CPICH信号的强度决定了小区的覆盖范围,影响网络容量,进而影响服务质量,因此是网络规划和优化中的关键参数。导频功率是最重要的参数,可让我们控制CPICH信号的强度。用于导频信号的功率越多,获得的覆盖范围越好。另一方面,小区中的导频功率电平的较高值意味着网络中的导频污染较高,并且可用于服务小区中用户业务的功率较少。在本文中,我们考虑将覆盖范围约束下的导频功率总量最小化的问题。我们的建模和解决方案方法基于数​​学编程技术。我们提出了一个在完全覆盖范围约束下进行飞行员功率优化的基本模型及其扩展版本,该模型允许我们研究各种覆盖级别并考虑网络上的用户流量分布。我们还提出了一种有效的算法,可以在合理的时间内为问题提供最佳解决方案。我们根据实际的计划方案报告了三个不同大小的WCDMA网络的数值实验,并研究了所需覆盖程度的不同水平对导频功率总量的影响。

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