Suppression of reflected wave of leaky-wave antenna by utilizing an aperture-fed patch antenna
Hua‐Lin Guan, Chien‐Jen Wang, Christina F. Jou
Abstract
Hua‐Lin Guan, Chien‐Jen Wang, Christina F. Jou
Abstract
Here, we present a method to suppress the back lobe of a short leaky-wave antenna by using an aperture-fed patch antenna on the backside. The aperture-fed patch antenna is connected to the open end of the leaky-wave antenna (LWA). Such a design offers another radiation path of the reflected wave and creates another radiation pattern on the back plane of the substrate. Experimental results show that the suppression of the reflected wave can be 10 dB at 10.0 GHz with an LWA length of 6 cm (2 wavelengths). The suppression bandwidth is 200 MHz owing to the narrow bandwidths of the aperture and patch. Compared to conventional designs, this novel structure can radiate as efficiently as an LWA with a length of 4 wavelengths. The two radiation patterns on the different planes have great potential in many applications and provide more flexibility than traditional designs.
OpenAlex reports 2 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
Here, we present a method to suppress the back lobe of a short leaky-wave antenna by using an aperture-fed patch antenna on the backside. The aperture-fed patch antenna is connected to the open end of the leaky-wave antenna (LWA). Such a design offers another radiation path of the reflected wave and creates another radiation pattern on the back plane of the substrate. Experimental results show that the suppression of the reflected wave can be 10 dB at 10.0 GHz with an LWA length of 6 cm (2 wavelengths). The suppression bandwidth is 200 MHz owing to the narrow bandwidths of the aperture and patch. Compared to conventional designs, this novel structure can radiate as efficiently as an LWA with a length of 4 wavelengths. The two radiation patterns on the different planes have great potential in many applications and provide more flexibility than traditional designs.
Key concepts: Leaky wave antenna, Optics, Antenna aperture, Radiation pattern, Main lobe, Microstrip antenna, Patch antenna, Side lobe