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Characteristics of closed loop power control algorithms for a cellular DSICDMA system

机译:蜂窝DSICDMA系统的闭环功率控制算法的特性

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The authors consider the performance of a reverse link DS/CDMA system with fast closed loop power control algorithms. For power control purposes, the received signal-to- interference ratio (SIR) must be measured. A simple procedure is proposed for estimating received SIR which does not need much calibration. The result shows that the BER performance is sensitive to the feedback delay or the inverse of the power control updating frequency. The power control mechanism is effective provided that the power control command updating frequency is ten times higher than the Doppler frequency. A step-size of 2dB for the single step-size power control algorithm is found to be optimal for the mobile unit's velocity, which is uniformly distributed in the range 0- 100km/h. It was also found that the BER performance is very sensitive to the power control command channel error rate in the range 10~1- l0 2. This suggests that the system designer should concentrate on minimising this error to improve the overall performance. Lastly, if a multiple step-size power control algorithm is to be implemented, two power control command bits would perform better than one, three, or more bits in a mobile channel environment.
机译:作者考虑了具有快速闭环功率控制算法的反向链路DS / CDMA系统的性能。为了进行功率控制,必须测量接收到的信号干扰比(SIR)。提出了一种简单的过程来估计接收的SIR,不需要太多的校准。结果表明,BER性能对反馈延迟或功率控制更新频率的倒数敏感。只要功率控制命令更新频率比多普勒频率高十倍,则功率控制机制是有效的。对于单个步长的功率控制算法,发现2dB的步长对于移动单元的速度是最佳的,该速度均匀地分布在0-100 km / h的范围内。还发现,BER性能对功率控制命令通道的误码率在10〜1-l0 2范围内非常敏感。这表明系统设计人员应专注于最小化此错误以提高整体性能。最后,如果要实现多步长的功率控制算法,则在移动信道环境中,两个功率控制命令位的性能将优于一个,三个或更多位。

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