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Application and performance of downlink beamforming techniques in UMTS

机译:下行波束成形技术在UMTS中的应用与性能

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摘要

The opportunities and constraints for application of beamforming techniques in UMTS are reviewed and compared by means of extensive dynamic network-level simulations. We start by reviewing the physical layer specifications for UMTS in order to clarify which channels are allowed to use beamforming. Second, radio resource management for cells with beamforming capabilities are addressed from a standardization and algorithmic point of view. The exchange of beamforming specific measurement reports between the base station (Node-B) and the radio network controller is discussed as well as beam switching mechanisms, directional power-based admission control, and more. In addition to implementation of beamforming within logical cells, options for exploiting the antenna array to synthesize independent sector beams are also investigated (i.e., higher order sectorization via beamforming). The presented results show that beamforming within logical cells is an effective enabler for higher system capacity, while the use of beamforming for creation of many logical cells is less attractive due to significantly larger soft handover overhead and somewhat reduced capacity gain.
机译:通过广泛的动态网络级仿真,回顾并比较了在UMTS中应用波束成形技术的机会和局限性。我们首先查看UMTS的物理层规范,以明确允许哪些信道使用波束成形。其次,从标准化和算法的角度解决了具有波束成形能力的小区的无线电资源管理。讨论了基站(Node-B)与无线网络控制器之间的波束成形特定测量报告的交换,以及波束切换机制,基于方向性功率的准入控制等。除了在逻辑单元内实现波束成形之外,还研究了用于利用天线阵列来合成独立扇区波束的选项(即,经由波束成形的更高阶扇区化)。呈现的结果表明,逻辑小区内的波束成形是实现更高系统容量的有效促成因素,而由于大量更大的软切换开销和稍微降低的容量增益,将波束成形用于创建许多逻辑小区的吸引力较小。

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