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ACPR prediction of multi-carrier systems through behavioural modelling of power amplifiers using measured two-tone transfer characteristics and statistical techniques

机译:通过使用测量的双音传输特性和统计技术对功率放大器进行行为建模,对多载波系统进行ACPR预测

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Behavioural models for power amplifiers (PA) have traditionally been developed based on conventional AM-AM and AM-PM curves from one-tone measurements, which discounts the presence of memory in the system. However, as signal bandwidth increases particularly in multicarrier spread spectrum systems, memory effects become more severe. These effects result from the frequency response of matching networks, nonlinear capacitances of the transistors and the response of the bias networks. Multi-stage high power amplifiers require a more accurate behavioural model to provide a better description of memory effects and highly nonlinear characteristics than the memoryless models based on single-tone transfer characteristics. This is achieved using measured two-tone transfer characteristics of the amplitude and phase of the fundamental, IM3 and IM5 components, which includes highly nonlinear components that represent the amplifier's significant memory. A statistical technique is then applied to predict spectral regrowth of a multicarrier signal due to the nonlinearity of the PA using the autocorrelation moments of the signal and the derived behavioural model. This statistical method allows accurate, fast and efficient prediction of the adjacent channel power ratio (ACPR) of the communication system without time-consuming time-domain simulations.
机译:传统上基于单音测量的传统AM-AM和AM-PM曲线开发了功率放大器(PA)的行为模型,这降低了系统内存的存在。但是,随着信号带宽的增加,特别是在多载波扩频系统中,存储器的影响变得更加严重。这些影响是由匹配网络的频率响应,晶体管的非线性电容以及偏置网络的响应引起的。与基于单音转移特性的无记忆模型相比,多级大功率放大器需要更精确的行为模型来更好地描述记忆效应和高度非线性特性。这是通过测量基波,IM3和IM5分量的幅度和相位的两音调传输特性来实现的,IM3和IM5分量包括代表放大器重要存储器的高度非线性分量。然后,使用信号的自相关矩和导出的行为模型,将统计技术应用于预测由于PA的非线性而导致的多载波信号的频谱再生长。这种统计方法可以对通信系统的相邻信道功率比(ACPR)进行准确,快速和有效的预测,而无需进行费时的时域仿真。

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