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dc.contributor.advisorCollantes Metola, Juan Maríaes
dc.contributor.advisorLizarraga Mallo, Ibonees
dc.contributor.authorMori Carrascal, Libe ORCIDes
dc.contributor.otherF. CIENCIA Y TECNOLOGIAes
dc.contributor.otherZIENTZIA ETA TEKNOLOGIA F.
dc.date.accessioned2014-06-23T19:07:45Zes
dc.date.accessioned2015-07-07T13:39:06Z
dc.date.available2014-06-23T19:07:45Zes
dc.date.available2015-07-07T13:39:06Z
dc.date.issued2014-06-23T19:07:45Zes
dc.identifier.urihttp://hdl.handle.net/10810/10745es
dc.description.abstractSpurious oscillations are one of the principal issues faced by microwave and RF circuit designers. The rigorous detection of instabilities or the characterization of measured spurious oscillations is still an ongoing challenge. This project aims to create a new stability analysis CAD program that tackles this chal- lenge. Multiple Input Multiple Output (MIMO) pole-zero identification analysis is introduced on the program as a way to create new methods to automate the stability analysis process and to help designers comprehend the obtained results and prevent incorrect interpretations. The MIMO nature of the analysis contributes to eliminate possible controllability and observability losses and helps differentiate mathematical and physical quasi-cancellations, products of overmodeling. The created program reads Single Input Single Output (SISO) or MIMO frequency response data, and determines the corresponding continuous transfer functions with Vector Fitting. Once the transfer function is calculated, the corresponding pole/zero diagram is mapped enabling the designers to analyze the stability of an amplifier. Three data processing methods are introduced, two of which consist of pole/zero elimina- tions and the latter one on determining the critical nodes of an amplifier. The first pole/zero elimination method is based on eliminating non resonant poles, whilst the second method eliminates the poles with small residue by assuming that their effect on the dynamics of a system is small or non-existent. The critical node detection is also based on the residues; the node at which the effect of a pole on the dynamics is highest is defined as the critical node. In order to evaluate and check the efficiency of the created program, it is compared via examples with another existing commercial stability analysis tool (STAN tool). In this report, the newly created tool is proved to be as rigorous as STAN for detecting instabilities. Additionally, it is determined that the MIMO analysis is a very profitable addition to stability analysis, since it helps to eliminate possible problems of loss of controllability, observability and overmodeling.es
dc.language.isoenges
dc.rightsinfo:eu-repo/semantics/openAccesses
dc.subjectMIMOes
dc.subjectstabilityes
dc.subjectmatlabes
dc.subjecttooles
dc.titleStability analysis of RF amplifiers based on MIMO pole-zero identificationes
dc.typeinfo:eu-repo/semantics/bachelorThesises
dc.date.updated2014-06-23T15:20:32Zes
dc.language.rfc3066enes
dc.rights.holder© 2014, EL AUTORes
dc.contributor.degreeGrado en Ingeniería Electrónicaes
dc.contributor.degreeIngeniaritza Elektronikoko Gradua
dc.identifier.gaurregister51980-631214-10es
dc.identifier.gaurassign8733-631214es


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