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Optimal downlink power-control design methodology for a mobile radio DS-CDMA system

机译:移动无线电DS-CDMA系统的最佳下行链路功率控制设计方法

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A design methodology for a downlink power-control technique that maximizes the user-capacity of a DS-CDMA cellular system is proposed. First, the downlink beam-forming weights for the base-station antenna-array are designed based on the maximum SIR criterion. Then by optimizing the downlink power-control algorithm subject to a fixed total transmit power constraint, we further increase the SINR at the mobile terminal, thus increasing the capacity of the system. Due to the quasi-convex property of the SINR expression, we formulate the power optimization process as a feasibility problem with linear constraints, which can be solved efficiently by linear programming methods. With the same methodology, we can also minimize the required transmit power while satisfying the SINR threshold constraints. Computer simulations are given to evaluate the optimized downlink capacity, received SINR, and the required transmit power of a DS-CDMA system using antenna-arrays at the base-station.
机译:提出了一种用于下行链路功率控制技术的设计方法,该设计方法可使DS-CDMA蜂窝系统的用户容量最大化。首先,基于最大SIR准则设计基站天线阵列的下行链路波束成形权重。然后,通过在固定的总发射功率约束下优化下行链路功率控制算法,我们进一步提高了移动终端的SINR,从而提高了系统的容量。由于SINR表达式的拟凸性质,我们将功率优化过程公式化为具有线性约束的可行性问题,可以通过线性规划方法有效地解决该问题。使用相同的方法,我们还可以在满足SINR阈值约束的同时最小化所需的发射功率。给出了计算机仿真,以评估优化的下行链路容量,接收到的SINR以及在基站使用天线阵列的DS-CDMA系统所需的发射功率。

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