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Power allocation and call admission control in multi-class traffic DS-CDMA systems with imperfect power control

机译:功率控制不完善的多类业务DS-CDMA系统中的功率分配和呼叫接纳控制

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摘要

We deal with power allocation (PA) and call admission control (CAC) under imperfect power control (IPC) in the reverse link of direct sequence-code division multiple access systems for supporting multi-class traffic. First, we briefly review the optimum PA scheme under perfect power control (PPC) and the CAC scheme subject to an outage constraint on the total composite received power. Then, we analyze the outage degradation due to the power control error when the optimum reference power levels under PPC are used. In order to mitigate the outage degradation, we would modify the reference power levels by incorporating a call dropping strategy and an outage-lowering strategy into the optimum PA scheme under PPC. Also, we derive a constraint inequality to determine the reverse link capacity under IPC. Finally, through numerical analyses, we compute the modified reference power levels under IPC and evaluate the reverse link capacity under IPC.
机译:我们在直接序列码分多址系统的反向链路中处理功率分配(PA)和不完全功率控制(IPC)下的呼叫允许控制(CAC),以支持多类流量。首先,我们简要回顾一下在完全功率控制(PPC)下的最佳PA方案和受总组合接收功率中断约束的CAC方案。然后,当使用PPC的最佳参考功率水平时,我们分析了由于功率控制误差引起的停电退化。为了减轻停电的退化,我们将通过在PPC下将掉话策略和停电降低策略纳入最佳PA方案来修改参考功率水平。同样,我们得出一个约束不等式来确定IPC下的反向链路容量。最后,通过数值分析,我们计算了IPC下修改后的参考功率水平,并评估了IPC下的反向链路容量。

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