放大器
预失真
计算机科学
电子工程
线性
射频功率放大器
线性放大器
宽带
电气工程
基带
功率(物理)
直接耦合放大器
互调
带宽(计算)
低噪声放大器
发射机
阻抗匹配
作者
Martin Pospisil,Roman Marsalek,Tomas Gotthans,Tomas Urbanec
出处
期刊:Sensors
[Multidisciplinary Digital Publishing Institute]
日期:2021-02-20
卷期号:21 (4): 1473-
摘要
Millimeter waves will play an important role in communication systems in the near future. On the one hand, the bandwidths available at millimeter-wave frequencies allow for elevated data rates, but on the other hand, the wide bandwidth accentuates the effects of wireless front-end impairments on transmitted waveforms and makes their compensation more difficult. Research into front-end impairment compensation in millimeter-wave frequency bands is currently being carried out, mainly using expensive laboratory setups consisting of universal signal generators, spectral analyzers and high-speed oscilloscopes. This paper presents a detailed description of an in-house built MATLAB-controlled 60 GHz measurement test-bed developed using relatively inexpensive hardware components that are available on the market and equipped with digital compensation for the most critical front-end impairments, including the digital predistortion of the power amplifier. It also demonstrates the potential of digital predistortion linearization on two distinct 60 GHz power amplifiers: one integrated in a direct-conversion transceiver and an external one with 24 dBm output power.
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