An Enhanced Power Control Scheme for Dual Connectivity

VTC Fall(2014)

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摘要
In 3GPP LTE-Advanced Release-12, the feature of dual connectivity (DC) has been introduced to enhance small cell networks from the aspects of higher layer architecture and physical layer procedures, which can improve mobility robustness and per-user throughput as well as avoid frequent hard handover among small cells. To guarantee the UE maximum transmit power is not exceeded, the conventional power scaling and simple semi-static power splitting between two network points were considered for DC. However, both schemes would degrade the DC performance in terms of uplink coverage and user throughput due to the uncoordinated scheduling at two network points. To address this issue, an enhanced power control scheme is proposed which could conduct uncoordinated adjustment of uplink power and data rate for DC. The simulation results are provided to demonstrate the performance advantages of the proposed scheme.
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关键词
physical layer procedures,power control,scheduling,per-user throughput,cellular radio,uplink power,mobility management (mobile radio),cell networks,semistatic power splitting,ue maximum power transmission,3g mobile communication,3gpp lte-advanced release-12,long term evolution,telecommunication control,mobility robustness improvement,uncoordinated scheduling,dual connectivity,power control scheme enhancement,signal to noise ratio,uplink,throughput,interference
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