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Gate Bias Control and Harmonic Load Modulation for a Doherty Amplifier

机译:Doherty放大器的栅极偏置控制和谐波负载调制

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摘要

Linearity and efficiency are both critical parameters for radio frequency transmitter applications. In theory, a Doherty amplifier is a linear amplifier that is significantly more efficient than comparable conventional linear amplifiers. It comprises two amplifiers, connected at their outputs by a quarter-wave transformer. The main amplifier is always on, while the peaking amplifier is off during low power levels. Load modulation of the main amplifier occurs when the peaking amplifier is on due to the quarter-wave transformer, ensuring the main amplifier never enters saturation. This results in an efficiency characteristic that increases with respect to input power at twice the normal rate at low power levels, and plateaus to a high value at high power levels. However, in much of the research that has been done to-date, less-than-ideal results have been achieved (although efficiency was better than a conventional amplifier). It was decided to investigate the cause of the discrepancy between theoretical and practical results, and devise a method to counteract the problem.It was discovered that the main cause of the discrepancy was non-ideal transistor gate-voltage to drain-current characteristics. The implementation of a gate bias control scheme based upon measured transistor transfer characteristics, and the desired main and peaking amplifier output currents, resulted in a robust method to ensure near-ideal results. A prototype amplifier was constructed to test the control scheme, and theoretical, simulated and measured results were well matched. The amplifier had a region of high efficiency in the high power levels (over 34% for the last 6 dB of input power), and the gain was nearly constant with respect to input power (between 4 and 5 dB over the dynamic range).Furthermore, it was decided to investigate the role harmonics play within the Doherty amplifier. A classical implementation shunts unwanted harmonics to ground within the main and peaking amplifiers. However, odd harmonics generated by the peaking amplifier can be used to operate the main amplifier like a class F amplifier. This means its supply voltage can be lowered, without the amplifier entering saturation, and the efficiency of the Doherty amplifier can be increased without a detrimental effect on the its linearity. A prototype amplifier was constructed to test this theory, and gave good results, with better efficiency than that of a conventional amplifier, and a constant gain with respect to input power (between 6.4 dB and 6.5 dB over the dynamic range).
机译:线性度和效率都是射频发射机应用的关键参数。从理论上讲,Doherty放大器是一种线性放大器,其效率要比同类常规线性放大器高得多。它包括两个放大器,它们的输出通过四分之一波变压器连接。主放大器始终处于打开状态,而峰值放大器在低功率级别期间处于关闭状态。当峰值放大器由于四分之一波变压器而开启时,将对主放大器进行负载调制,从而确保主放大器永远不会进入饱和状态。这导致效率特性相对于输入功率在低功率水平下以正常速率的两倍增加,并在高功率水平下稳定至高值。但是,迄今为止,在许多研究中,都取得了不理想的结果(尽管效率比常规放大器好)。决定研究造成理论和实践结果之间差异的原因,并设计出解决该问题的方法。发现差异的主要原因是晶体管的栅极电压与漏极电流特性不理想。基于测得的晶体管传输特性以及所需的主放大器和峰值放大器输出电流的栅极偏置控制方案的实施,导致了一种确保接近理想结果的可靠方法。构建了原型放大器来测试控制方案,并且理论,仿真和测量结果都很好地匹配。该放大器在高功率电平下具有高效率区域(对于最后6 dB的输入功率超过34%),并且增益相对于输入功率几乎恒定(在动态范围内介于4到5 dB之间)。此外,决定研究谐波在Doherty放大器中的作用。经典实现将主放大器和峰值放大器内的有害谐波旁路到地面。但是,由峰值放大器产生的奇次谐波可以像F类放大器一样用于操作主放大器。这意味着可以在不使放大器进入饱和的情况下降低其电源电压,并且可以提高Doherty放大器的效率,而不会对其线性产生不利影响。构建了一个原型放大器来测试该理论,并给出了良好的结果,其效率高于传统放大器,并且相对于输入功率具有恒定增益(在动态范围内介于6.4 dB和6.5 dB之间)。

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    Smith Karla Jenny Isabella;

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  • 年度 2009
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  • 正文语种 en
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