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A SYSTEMATIC SIMULATION OF LARGE SIGNAL ON CHIP AMPLIFIER MODULES EXCITED BY WCDMA SIGNALS

机译:WCDMA信号激发芯片放大器模块的大信号的系统模拟

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The exponential growth of the mobile communication market is continuing unabated so that more and more demands are being placed on the available spectrum. This has in turn stimulated the development and deployment of spread spectrum systems based on Code Division Multiple Access, CDMA. This paper addresses problems inherent to the design of large signal gain blocks for use in wide-band CDMA systems. Consistent with our previous work we make use of the Envelope Circuit Simulator in Agilent EDA's Microwave Design System, MDS. The large dynamic range of the CDMA power envelope spectrum, expressed in the crest factor, serves to make simulated harmonic load and source tuning attractive for assessing system performance. The input and output immittances seen by the individual gain blocks must be chosen to satisfy the real time function condition. We demonstrate that simulated results using improperly chosen immittances might lead to incorrect interpretation of large signal behavior of the semiconductor devices. The large fluctuation of the CDMA stimulus tries the linearity of the transfer function leading to spectral re-growth. A study of base-band performance (without harmonics) has shown that the Adjacent Channel Power Ratio, ACPR, is primarily dominated by the derivative of the transfer function with respect to the output power level. The use of pre-correction of the overall transfer function has proved to be the most appropriate means to enhance system performance.
机译:移动通信市场的指数增长是不平衡的,以便在可用频谱上放置越来越多的需求。这反过来旨在刺激基于码分多址CDMA的扩频系统的开发和部署。本文解决了用于宽带CDMA系统的大信号增益块设计所固有的问题。与我们以前的工作一致我们在安捷伦EDA的微波设计系统中使用信封电路模拟器MDS。 CDMA电源包络谱的大动态范围在CREST因子中表示,用于制作模拟谐波负载和用于评估系统性能的源调整。必须选择各个增益块看到的输入和输出凹陷以满足实时函数条件。我们证明使用不正确的凹凸的模拟结果可能导致半导体器件的大信号行为的解释不正确。 CDMA刺激的大波动试图导致光谱重新生长的传递函数的线性。基带性能(无谐波)的研究表明,相邻信道功率比ACPR主要由相对于输出功率电平的传递函数的导数主导。已经证明,使用总体传递函数的预先修正是增强系统性能的最合适的手段。

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