Dynamic nonlinear pre-distortion of signal generators for improved dynamic range
2009 (English)Independent thesis Advanced level (degree of Master (One Year)), 20 credits / 30 HE credits
Student thesis
Abstract [en]
In this thesis, a parsimoniously parameterized digital predistorter is derived for linearization of the IQ modulation mismatch and the amplifier imperfection in the signal generator [1]. It is shown that the resulting predistorter is linear in its parameters, and thus they may be estimated by the method of least-squares. Spectrally pure signals are an indispensable requirement when the signal generator is to be used as part of a test bed. Due to the non-linear characteristic of the IQ modulator and power amplifier, distortion will be present at the output of the signal generator. The device under test was the IQ modulation mismatch and power amplifier deficiencies in the signal generator.
In [2], the dynamic range of low-cost signal generators are improved by employing model based digital pre-distortion and the designed predistorter seems to give some improvement of the dynamic range of the signal generator.
The goal of this project is to implement and verify the theory parts [1] using data program (Matlab) to improve the dynamic range of the signal generator. The design digital pre-distortion that is implemented in software so that the dynamic range of the signal generator output after predistortion is superior to that of the output prior to it. In this project, we have observed numerical problems in the proposed theory and we have found other methods to solve the problem.
The polynomial model is commonly used in power amplifier modeling and predistorter design. However, the conventional polynomial model exhibits numerical instabilities when higher order terms are included, we have used the conventional and orthogonal polynomial models. The result shows that the orthogonal polynomial model generally yield better power amplifier modeling accuracy as well as predistortion linearization performance then the conventional polynomial model.
Place, publisher, year, edition, pages
2009. , p. 51
Keywords [en]
Predistortion, IQ imbalance, Predistortion mirror distortion, Power amplifier deficiencies, Parsimonious predistorter structures, Predistorter properties, Training of the predistorter based on N-sequences of data.
National Category
Telecommunications
Identifiers
URN: urn:nbn:se:hig:diva-4945Archive number: TEX 081022OAI: oai:DiVA.org:hig-4945DiVA, id: diva2:226981
Presentation
(English)
Uppsok
teknik
Supervisors
Examiners
2009-07-082009-07-082025-10-02Bibliographically approved