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An Adaptive Beam-Shaping Strategy for WCDMA Multicellular Networks with Non-Uniform Traffic Requirements

机译:具有非统一流量需求的WCDMA多蜂窝网络的自适应波束成形策略

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This paper investigates the performance of an adaptive beam-shaping (ABS) strategy for wideband code division multiple access (WCDMA) multicellular networks with antenna arrays (AAs) at the base station (BS). The purpose of this ABS strategy is to form beams in directions of increased traffic distribution while at the same time minimize the total downlink transmission power. Performance is evaluated statistically with Monte Carlo (MC) simulations through a grid-enabled WCDMA system level simulator in terms of achievable throughput per beam for a network with up to four tiers of cells and increased loading (up to 90%). Results are presented for multirate services which show that the proposed ABS strategy can increase the throughput per beam relatively to a fixed grid of beams sectorization strategy up to 75/120/165% with 1/2/3 hotspots per cell respectively, while this gain is up to 35% for uniform traffic distribution. Moreover, it is shown that this gain can be achieved while at the same time the blocking probability in the central cell is reduced and the overall throughput of the network increased.
机译:本文研究了基站(BS)上带有天线阵列(AA)的宽带码分多址(WCDMA)多蜂窝网络的自适应波束成形(ABS)策略的性能。此ABS策略的目的是在增加流量分布的方向上形成波束,同时将总下行链路传输功率降至最低。通过具有网格功能的WCDMA系统级仿真器,使用Monte Carlo(MC)仿真对性能进行统计评估,以确定具有多达四层小区和增加的负载(高达90%)的网络的每束可实现的吞吐量。提出的多速率服务的结果表明,相对于固定的波束扇区划分策略,提出的ABS策略可以将每个波束的吞吐量提高到75/120/165%,每个小区分别有1/2/3热点,而这一收益统一流量分配最高可达35%。而且,示出了可以实现该增益,同时降低了中央小区中的阻塞概率并且增加了网络的整体吞吐量。

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