Performance analysis of DS-CDMA under perfect and imperfect power control

M. M. Hossain, M. Awal, D. Roy, Md. Asraful Islam, Md. Anwar Hossain
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Abstract

CDMA refers to multiple access method in which the individual terminals uses spread spectrum techniques and occupy the entire spectrum whenever they transmit. This feature makes CDMA different from FDMA and TDMA. In the wireless communication, the Signal to Interference Ratio (SIR) and Bit Error Rate (BER) are the predominant parameter that characterizes the system performance. This paper presented here Standard Gaussian Approximation (SGA) methods presented in the international literature concerning the computation of the SIR and the BER in DS-CDMA systems under perfect and imperfect power control over fading and non-fading channel. The content and conclusions of this paper have driven to take many important decisions by varying different DS-CDMA communication parameters such as processing gain, number of interfering cells, multipath components etc. using SGA techniques. As SGA is analytically developed and is very computationally efficient solution for the system performance estimate in terms of SIR and BER, it helps us to avoid the tedious and cost-inefficient simulations.
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DS-CDMA在完全和不完全功率控制下的性能分析
CDMA是指单个终端使用扩频技术,在传输时占用整个频谱的多址接入方式。这一特点使得CDMA不同于FDMA和TDMA。在无线通信中,信号干扰比(SIR)和误码率(BER)是表征系统性能的主要参数。本文介绍了国际文献中关于DS-CDMA系统在衰落信道和非衰落信道的完全和不完全功率控制下的SIR和BER计算的标准高斯近似(SGA)方法。本文的内容和结论推动了通过使用SGA技术改变不同的DS-CDMA通信参数(如处理增益、干扰单元数量、多径组件等)来做出许多重要决策。由于SGA是分析开发的,并且在SIR和BER方面是系统性能估计的计算效率很高的解决方案,它有助于我们避免繁琐和低成本的仿真。
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