International audienceThis paper presents a method for designing impedance-matched parasitic superdirective Electrically Small Antenna (ESA) arrays. The proposed method uses the current excitation coefficients for calculating the required loads for the parasitic elements. The proposed method is validated via the design of a parasitic two-element superdirective ESA. The array has total dimensions of 54×24mm 2 and it achieves a maximum directivity of 7dBi
International audienceThis paper presents a network characteristic modes based method for parasitic ...
International audienceThis paper presents a network characteristic modes based method for parasitic ...
International audienceThis paper presents a network characteristic modes based method for parasitic ...
International audienceThis paper presents a method for designing impedance-matched parasitic superdi...
International audienceThis paper presents a method for designing impedance-matched parasitic superdi...
International audienceThis paper presents a method for designing impedance-matched parasitic superdi...
International audience—This paper presents an approach for designing parasitic loaded superdirective...
International audience—This paper presents an approach for designing parasitic loaded superdirective...
International audienceThis paper presents the design of an efficient end-fire parasitic superdirecti...
International audienceThis paper presents the design of an efficient end-fire parasitic superdirecti...
International audienceThis paper presents the design of an efficient end-fire parasitic superdirecti...
International audienceThis paper presents the design of an efficient end-fire parasitic superdirecti...
International audience—This paper presents an approach for designing parasitic loaded superdirective...
International audience—This paper presents an approach for designing parasitic loaded superdirective...
International audienceThis paper presents a network characteristic modes based method for parasitic ...
International audienceThis paper presents a network characteristic modes based method for parasitic ...
International audienceThis paper presents a network characteristic modes based method for parasitic ...
International audienceThis paper presents a network characteristic modes based method for parasitic ...
International audienceThis paper presents a method for designing impedance-matched parasitic superdi...
International audienceThis paper presents a method for designing impedance-matched parasitic superdi...
International audienceThis paper presents a method for designing impedance-matched parasitic superdi...
International audience—This paper presents an approach for designing parasitic loaded superdirective...
International audience—This paper presents an approach for designing parasitic loaded superdirective...
International audienceThis paper presents the design of an efficient end-fire parasitic superdirecti...
International audienceThis paper presents the design of an efficient end-fire parasitic superdirecti...
International audienceThis paper presents the design of an efficient end-fire parasitic superdirecti...
International audienceThis paper presents the design of an efficient end-fire parasitic superdirecti...
International audience—This paper presents an approach for designing parasitic loaded superdirective...
International audience—This paper presents an approach for designing parasitic loaded superdirective...
International audienceThis paper presents a network characteristic modes based method for parasitic ...
International audienceThis paper presents a network characteristic modes based method for parasitic ...
International audienceThis paper presents a network characteristic modes based method for parasitic ...
International audienceThis paper presents a network characteristic modes based method for parasitic ...