A feasibility study of an innovative design is presented of a metamaterial inspired antenna array for millimeter-wave band applications where non-mechanical beam-steering is required such as in 5G and 6G communications, automotive and radar systems. In communication systems beam-steering antennas can significantly improve signal-to-noise ratio, spatial directivity, and the efficiency of data transmission. However, in tightly packed arrays the effects of mutual coupling between the radiating elements can severely limit the array’s performance. The proposed antenna array consists of a 3 × 3 matrix of patch radiators that are tightly packed and interconnected to each other. Rows of radiators are demarcated by a horizontal microstrip transmissi...
A novel technique is shown to improve the isolation between radiators in antenna arrays. The propose...
This paper presents a new approach to suppress interference between neighbouring radiating elements ...
This chapter introduces a novel design concept to reduce mutual coupling among closely-spaced antenn...
An innovative design is presented of a metamaterial inspired antenna array for millimeter-wave band ...
YesThis article presents a unique technique to enhance isolation between transmit/receive radiating ...
A simple and practical technique for reducing the mutual coupling between neighbouring antennas is p...
The paper presents a technique to enhance the isolation between adjacent radiating elements that is ...
YesThe paper presents a technique to enhance the isolation between adjacent radiating elements which...
The paper presents a technique to enhance the isolation between adjacent radiating elements which is...
The paper presents a technique to enhance the isolation between adjacent radiating elements that is ...
In the recent era, fifth-generation technology (5G) has not been fully implemented in the realm of w...
The paper presents the results of a novel 3-D shared aperture 3 × 3 matrix antenna-array for 26 GHz ...
This paper presents the feasibility study of applying a combination of suppression techniques to imp...
A novel technique is shown to improve the isolation between radiators in antenna arrays. The propos...
Abstract: A novel technique is shown to improve the isolation between radiators in antenna arrays. T...
A novel technique is shown to improve the isolation between radiators in antenna arrays. The propose...
This paper presents a new approach to suppress interference between neighbouring radiating elements ...
This chapter introduces a novel design concept to reduce mutual coupling among closely-spaced antenn...
An innovative design is presented of a metamaterial inspired antenna array for millimeter-wave band ...
YesThis article presents a unique technique to enhance isolation between transmit/receive radiating ...
A simple and practical technique for reducing the mutual coupling between neighbouring antennas is p...
The paper presents a technique to enhance the isolation between adjacent radiating elements that is ...
YesThe paper presents a technique to enhance the isolation between adjacent radiating elements which...
The paper presents a technique to enhance the isolation between adjacent radiating elements which is...
The paper presents a technique to enhance the isolation between adjacent radiating elements that is ...
In the recent era, fifth-generation technology (5G) has not been fully implemented in the realm of w...
The paper presents the results of a novel 3-D shared aperture 3 × 3 matrix antenna-array for 26 GHz ...
This paper presents the feasibility study of applying a combination of suppression techniques to imp...
A novel technique is shown to improve the isolation between radiators in antenna arrays. The propos...
Abstract: A novel technique is shown to improve the isolation between radiators in antenna arrays. T...
A novel technique is shown to improve the isolation between radiators in antenna arrays. The propose...
This paper presents a new approach to suppress interference between neighbouring radiating elements ...
This chapter introduces a novel design concept to reduce mutual coupling among closely-spaced antenn...