2015 57th International Symposium ELMAR (ELMAR) 2015
DOI: 10.1109/elmar.2015.7334517
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Modeling of MEMS enabled reconfigurable frequency selective surfaces in aperture of waveguide antenna array

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Cited by 3 publications
(2 citation statements)
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“…Reconfigurable antennas, filters, reflectors, antenna arrays, frequency selective surfaces, and other radio-frequency (RF) devices has been developed [36], because they have unique advantages over standard devices, such as band-switching and frequency tuning [37][38][39][40][41][42][43][44], beam-steering [45][46][47], polarization adjustment [52][53][54][55], and many other capabilities which are needed in future wireless communication systems.…”
Section: Reconfigurable Electromagnetic Devicesmentioning
confidence: 99%
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“…Reconfigurable antennas, filters, reflectors, antenna arrays, frequency selective surfaces, and other radio-frequency (RF) devices has been developed [36], because they have unique advantages over standard devices, such as band-switching and frequency tuning [37][38][39][40][41][42][43][44], beam-steering [45][46][47], polarization adjustment [52][53][54][55], and many other capabilities which are needed in future wireless communication systems.…”
Section: Reconfigurable Electromagnetic Devicesmentioning
confidence: 99%
“…PIN diodes are used as switches to control the effective electrical length of antennas [40][41][42]. Microelectromechanical system (MEM) switches also enable the development of reconfigurable antennas [43][44][45], frequency selective surfaces [46][47] and antenna arrays [48][49]. In [50][51], an optical controlled switch was used for a reconfigurable antenna design, the switch is preferred over electronically controlled switches because it provides perfect isolation between the controlling optical signal and controlled microwave signal even at high switching speeds…”
Section: Reconfigurable Electromagnetic Devicesmentioning
confidence: 99%