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Forward-link soft-handoff in CDMA with multiple-antenna selection and fast joint power control

机译:具有多天线选择和快速接合功率控制的CDMA中的前向链接软切换

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摘要

We consider forward-link soft-handoff with multiple antenna selection and fast joint power control at high data rates in a cellular code-division multiple-access network, where signals are directed to a mobile station (MS) from antennas located at the same or different base stations. The total power transmitted to any mobile is divided among the active antennas selected according to the momentary channel conditions so as to maximize the signal-interference ratio at each MS. Multiple-antenna selection is used to mitigate the effects of both short- and long-term fading, and achieve the best soft-handoff with respect to system capacity and complexity. To achieve capacity gains with soft-handoff, we derive optimum handoff thresholds corresponding to the optimum handoff region in different cell environments. Numerical results demonstrate that under high Doppler spread and large handoff-delay conditions, the proposed soft-handoff employing two transmit antennas and the optimum handoff threshold achieves a significant gain in microcell environments, but not in macrocell environments.
机译:我们考虑使用多个天线选择和在蜂窝码分多址网络中的高数据速率的多个天线选择和快速接头功率控制的前向链路软切换,其中信号被引导到来自位于相同或的天线的移动站(MS)。不同的基站。传输到任何移动移动的总功率在根据瞬时信道条件选择的活动天线中划分,以便最大化每个MS处的信号干扰比。多天线选择用于减轻短期和长期衰落的效果,并实现有关系统容量和复杂性的最佳软切换。为了通过软切换实现容量收益,我们推出了与不同单元环境中的最佳切换区域相对应的最佳切换阈值。数值结果表明,在高多普勒扩展和大的切换延迟条件下,采用两个发射天线的所提出的软切换和最佳切换阈值在Microcell环境中实现了显着的增益,但不是在宏小区环境中。

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