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A Novel Approach for Mitigation of RF Oscillator Pulling in a Polar Transmitter

机译:缓解极性发射器中RF振荡器的一种新颖方法

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摘要

A novel technique for mitigation of self interference in a highly integrated SoC transmitter is presented. The interference originates from the internal power amplifier (i.e., aggressor) that leads to injection pulling of the local RF oscillator (i.e., victim). The characteristic of injection pulling was found to be dependent on the AM signal applied to the power amplifier. A hypothesis describing the mechanism of injection pulling of the local oscillator is presented. A mathematical model is developed to study the characteristics of this self interference verified then by measurements. Based on this model, a digitally controlled delay circuit is proposed and implemented in a digital polar GSM/EDGE transmitter that makes the system less susceptible to injection pulling through automatic phase adjustment between the aggressor and the victim. Compliant EVM and spectrum performance is measured on SoC fabricated in 65-nm CMOS showing the effectiveness of the proposed solution.
机译:提出了一种缓解高度集成SoC发射机中自干扰的新颖技术。干扰源自内部功率放大器(即,干扰源),导致本地RF振荡器(即,受害者)的注入拉动。发现注入牵引的特性取决于施加到功率放大器的AM信号。提出了描述本地振荡器的注入拉动机制的假设。建立了数学模型来研究这种自我干扰的特性,然后通过测量进行验证。基于该模型,提出并在数字极性GSM / EDGE发射器中实现了一个数控延迟电路,该电路使系统在侵略者与受害人之间进行自动相位调整后,不易受到注入拉动的影响。在65 nm CMOS上制造的SoC上测量了符合标准的EVM和频谱性能,从而证明了所提出解决方案的有效性。

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