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Estimation of practical inter-modulation rejection values in a multi-loop feed-forward microwave power amplifier using Monte-Carlo method

机译:使用Monte-Carlo方法估计多环前馈微波功率放大器中的实用帧间抑制值

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Feed-forward is one of the best methods for linearizing microwave power amplifiers, but due to device tolerance in implementation of the system components, the practical Inter-Modulation Rejection (IMR) value may differ quite much from the theoretical IMR value. One of the methods to improve the practical performance of the system is using the multi-loop configuration. Here we have introduced the multi-loop feed-forward systems and we have estimated the practical IMR values of the system using Monte-Carlo analysis. As the analysis shows, although the number of components in a multi-loop system is increased with respect to a simple feed-forward system, but the difference between the practical value and the theoretical value of the IMR for the two systems is almost the same. Therefore a multi-loop feed-forward system with higher practical IMR may be applicable for linearizing a microwave power amplifier. Simulations with ADS show one can expect a multi-loop feed-forward system designed for an ideal 39dB IMR, after implementation with usual techniques, may have 29dB rejection, which is an acceptable value for a linearization system.
机译:前馈是线性化微波功率放大器的最佳方法之一,而是由于设备公差在系统组件的实现中,实际的调制间抑制(IMR)值可能与理论IMR值不同。提高系统实际性能的方法之一是使用多环配置。在这里,我们推出了多环前馈系统,我们估计了使用Monte-Carlo分析系统的实际IMR值。随着分析所显示的,尽管多环系统中的组件的数量相对于简单的前锋系统增加,但是两个系统的IMR的实际值和理论值之间的差异几乎相同。因此,具有较高实际IFR的多环前馈系统可以适用于线性化微波功率放大器。使用广告的模拟显示,可以预期为设计为理想的39dB IMR的多环前馈系统,在使用通常的技术实现之后,可以具有29dB的拒绝,这是线性化系统的可接受的值。

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