CDMA高空平台通信信道固定步长闭环功率控制评价

Iskandar, A. Kurniawan, H. Syaputra
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引用次数: 4

摘要

本文描述了固定步长闭环功率控制算法在新型无线信道高空平台中的性能评价。提出了这种新的无线传输方法,作为提供下一代业务的补充系统,其中该技术基本上采用CDMA。在HAPs通信中,信道被预测具有与地面信道不同的特性。在本工作中,HAPs信道建模遵循Ricean衰落分布,其K因子是根据实验测量得到的。然后在该信道下对固定步进功率控制算法进行了计算机仿真,以评价其性能。从功率控制的步长、用户仰角、反馈延迟和SIR估计误差等方面介绍了该算法的性能。研究发现,固定步长闭环功率控制的性能随步长和俯仰角的增大而增大。反馈延迟对功率控制性能影响不大。与真实的SIR估计相比,SIR估计误差会降低功率控制的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On the evaluation of fixed step closed loop power control for CDMA High Altitude Platforms (HAPs) communication channel
This paper describes the performance evaluation of fixed step closed loop power control algorithm in a novel wireless channel that is called High Altitude Platforms (HAPs). This new wireless delivery method is proposed as a complementary system in providing the next generation services in which the technology basically employs CDMA. In HAPs communication, the channel is predicted to have different characteristic compared to that in terrestrial channel. In this work, HAPs channel is modeled to follow Ricean fading distribution whose K factor is obtained based on experimental measurement. Fixed step power control algorithm is then computer simulated under such a channel to evaluate its performance. The performance is presented in terms of step size of the power control, users elevation angle, feedback delay, and SIR estimation error. We found the performance of fixed step closed loop power control in HAPs channel increases with the increase of step size and elevation angle. Feedback delay has insignificant effect to the power control performance. SIR estimation error degrades the performance of the power control compared with the true SIR estimation.
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