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@Article{YamasakiRoss:2016:SiStDi,
               author = "Yamasaki, Fernanda Sayuri and Rossi, Jos{\'e} Osvaldo",
          affiliation = "{Instituto Nacional de Pesquisas Espaciais (INPE)} and {Instituto 
                         Nacional de Pesquisas Espaciais (INPE)}",
                title = "Simulation studies of distributed nonlinear gyromagnetic lines 
                         based on LC lumped model",
              journal = "IEEE Transactions on Plasma Science",
                 year = "2016",
               volume = "44",
               number = "10",
                pages = "2232--2239",
                month = "Oct.",
             keywords = "Circuit simulation, gyromagnetic line, nonlinear transmission line 
                         (NLTL), pulse shaping, SPICE.",
             abstract = "Great interest has been devoted to the study of nonlinear 
                         transmission lines (NLTLs) for radio-frequency generation. The two 
                         better known configurations of NLTLs are a dispersive line 
                         consisting of sections with nonlinear components and a continuous 
                         nondispersive line called gyromagnetic line. The goal of this 
                         paper is to study the gyromagnetic line through the effects of 
                         changing the NLTL parameters. This is done based on an analytical 
                         model supported by SPICE circuit simulations and validation of 
                         results with numerical analysis, focusing on the pulse rise time 
                         compression. Different models are studied by comparing simulations 
                         with corresponding results found in the literature. Such a 
                         technique could be used for the design of NLTL for space 
                         applications and mobile defense platforms of compact size.",
                  doi = "10.1109/TPS.2016.2556320",
                  url = "http://dx.doi.org/10.1109/TPS.2016.2556320",
                 issn = "0093-3813",
             language = "en",
        urlaccessdate = "28 abr. 2024"
}


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