Abstract :
The paper deals with modeling and testing of radio frequency (RF) amplifiers that operate with wideband signals, such as those involved in emerging wireless and/or wireline communication systems. The use of new parameters, i.e., the so-called modulated S-parameters, is particularly encouraged and supported. Differently from traditional S-parameters, their measurement no longer requires a sinusoidal signal as test stimulus but a digitally modulated signal of the same type with which the RF amplifier has to operate. The reliability of the new parameters is assessed through a number of experiments conducted on an RF amplifier, which is mainly addressed to very wide bandwidth industrial and commercial applications. Both sinusoidal and modulated S-parameters are evaluated, and their ability in describing the real performance of the amplifier when operating with typical wideband signals, such as those involved in third-generation (3G) communication systems, is compared
Keywords :
S-parameters; modulation; radiofrequency amplifiers; signal processing; telecommunication equipment testing; wideband amplifiers; 3G communication systems; RF amplifiers; RF measurements; WCDMA; modulated S-parameters reliability; sinusoidal S-parameters; wideband code-division multiple access; wideband radio frequency amplifiers; wideband signals; wireless communication systems; Bandwidth; Broadband amplifiers; Digital modulation; Frequency measurement; Multiaccess communication; RF signals; Radio frequency; Radiofrequency amplifiers; Scattering parameters; System testing; Modulated; RF measurements; radio frequency (RF) amplifier characterization; sinusoidal; wideband code-division multiple access (WCDMA); wireless communication systems;