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Triple band-notched aperture UWB antenna using hollow-cross-loop resonator
by
Chen, Zhe
, Liu, Ying
, Gong, Shuxi
in
antenna feeds
/ Antennas
/ Antennas and propagation
/ aperture antennas
/ Apertures
/ Applied sciences
/ Circuit properties
/ Electric, optical and optoelectronic circuits
/ electromagnetic interference
/ Electronics
/ Exact sciences and technology
/ frequency 3.5 GHz
/ frequency 5.7 GHz
/ frequency 8.2 GHz
/ HCLR
/ hollow‐cross‐loop resonator
/ impedance bandwidth
/ interference
/ Interoperability
/ microstrip antennas
/ microstrip feedline
/ microstrip resonators
/ Microwave circuits, microwave integrated circuits, microwave transmission lines, submillimeter wave circuits
/ microwave resonators
/ Radiocommunications
/ rectangle‐shaped aperture antenna
/ Resonators
/ Telecommunications
/ Telecommunications and information theory
/ triple band‐notched aperture UWB antenna
/ ultra wideband antennas
/ Ultrawideband
/ ultra‐wideband applications
/ voltage standing wave ratio
/ VSWR
/ WiMAX
/ Wireless communication
/ Wireless networks
/ WLAN band
/ X-band
/ X‐band satellite communication
2014
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Triple band-notched aperture UWB antenna using hollow-cross-loop resonator
by
Chen, Zhe
, Liu, Ying
, Gong, Shuxi
in
antenna feeds
/ Antennas
/ Antennas and propagation
/ aperture antennas
/ Apertures
/ Applied sciences
/ Circuit properties
/ Electric, optical and optoelectronic circuits
/ electromagnetic interference
/ Electronics
/ Exact sciences and technology
/ frequency 3.5 GHz
/ frequency 5.7 GHz
/ frequency 8.2 GHz
/ HCLR
/ hollow‐cross‐loop resonator
/ impedance bandwidth
/ interference
/ Interoperability
/ microstrip antennas
/ microstrip feedline
/ microstrip resonators
/ Microwave circuits, microwave integrated circuits, microwave transmission lines, submillimeter wave circuits
/ microwave resonators
/ Radiocommunications
/ rectangle‐shaped aperture antenna
/ Resonators
/ Telecommunications
/ Telecommunications and information theory
/ triple band‐notched aperture UWB antenna
/ ultra wideband antennas
/ Ultrawideband
/ ultra‐wideband applications
/ voltage standing wave ratio
/ VSWR
/ WiMAX
/ Wireless communication
/ Wireless networks
/ WLAN band
/ X-band
/ X‐band satellite communication
2014
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Triple band-notched aperture UWB antenna using hollow-cross-loop resonator
by
Chen, Zhe
, Liu, Ying
, Gong, Shuxi
in
antenna feeds
/ Antennas
/ Antennas and propagation
/ aperture antennas
/ Apertures
/ Applied sciences
/ Circuit properties
/ Electric, optical and optoelectronic circuits
/ electromagnetic interference
/ Electronics
/ Exact sciences and technology
/ frequency 3.5 GHz
/ frequency 5.7 GHz
/ frequency 8.2 GHz
/ HCLR
/ hollow‐cross‐loop resonator
/ impedance bandwidth
/ interference
/ Interoperability
/ microstrip antennas
/ microstrip feedline
/ microstrip resonators
/ Microwave circuits, microwave integrated circuits, microwave transmission lines, submillimeter wave circuits
/ microwave resonators
/ Radiocommunications
/ rectangle‐shaped aperture antenna
/ Resonators
/ Telecommunications
/ Telecommunications and information theory
/ triple band‐notched aperture UWB antenna
/ ultra wideband antennas
/ Ultrawideband
/ ultra‐wideband applications
/ voltage standing wave ratio
/ VSWR
/ WiMAX
/ Wireless communication
/ Wireless networks
/ WLAN band
/ X-band
/ X‐band satellite communication
2014
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Triple band-notched aperture UWB antenna using hollow-cross-loop resonator
Journal Article
Triple band-notched aperture UWB antenna using hollow-cross-loop resonator
2014
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Overview
A rectangle-shaped aperture antenna for ultra-wideband (UWB) applications which can prevent the interference problems is presented. By attaching a hollow-cross-loop resonator (HCLR), triple-notched frequency bands centred at 3.5, 5.7 and 8.2 GHz are obtained. The HCLR is loaded in the aperture over the microstrip feedline. The proposed antenna has been successfully simulated and measured. Based on the results, it is shown that the proposed antenna yields an impedance bandwidth of 2.55–12 GHz with a voltage standing wave ratio (VSWR) < 2, except for the triple-notched bands of 3.15–3.85 GHz (WiMAX band), 5.4–6.1 GHz (WLAN band) and 7.8–9.3 GHz (X-band satellite communication).
Publisher
The Institution of Engineering and Technology,Institution of Engineering and Technology,John Wiley & Sons, Inc
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