Recently, the desired very high throughput of 5G wireless networks drives millimeter-wave (mm-wave) communication into practical applications. A phased array technique is required to increase the effective antenna aperture at mm-wave frequency. Integrated solutions of beamforming/beam steering are extremely attractive for practical implementations. After a discussion on the basic principles of radio beam steering, we review and explore the recent advanced integration techniques of silicon-based electronic integrated circuits (EICs), photonic integrated circuits (PICs), and antenna-on-chip (AoC). For EIC, the latest advanced designs of on-chip true time delay (TTD) are explored. Even with such advances, the fundamental loss of a silicon-base...
Today, continuously growing wireless traffic have guided the progress in the wireless communication ...
It is known that the high performance radars and communication systems require the use of phased arr...
In this chapter, elaborating the direction of designing photonics-based beamforming networks (BFN) f...
Recently, the desired very high throughput of 5G wireless networks drives millimeter-wave (mm-wave) ...
Millimeter waves (mmW) ranging in frequency from 30 to 300 GHz provide a tremendous amount of spectr...
Proposed is silicon-photonics-based phased array antenna beamforming for high-resolution long-range ...
Nowadays, end users consume more data on mobile devices, such as smartphones, tablets or laptops, th...
This work presents a sub-THz transmitter scheme for wireless communications with beam steering capab...
This work presents a sub-THz transmitter scheme for wireless communications with beam steering capab...
Next-generation mobile networks will use mmWave frequencies as part of their strategy to meet the ev...
The evolution of microwave and mm-wave systems for communication and remote sensing is heading towar...
Multitude applications of photonic devices and technologies for the generation and manipulation of a...
The research described in this thesis was focused on the design, fabrication, and characterization o...
Today, continuously growing wireless traffic have guided the progress in the wireless communication ...
It is known that the high performance radars and communication systems require the use of phased arr...
In this chapter, elaborating the direction of designing photonics-based beamforming networks (BFN) f...
Recently, the desired very high throughput of 5G wireless networks drives millimeter-wave (mm-wave) ...
Millimeter waves (mmW) ranging in frequency from 30 to 300 GHz provide a tremendous amount of spectr...
Proposed is silicon-photonics-based phased array antenna beamforming for high-resolution long-range ...
Nowadays, end users consume more data on mobile devices, such as smartphones, tablets or laptops, th...
This work presents a sub-THz transmitter scheme for wireless communications with beam steering capab...
This work presents a sub-THz transmitter scheme for wireless communications with beam steering capab...
Next-generation mobile networks will use mmWave frequencies as part of their strategy to meet the ev...
The evolution of microwave and mm-wave systems for communication and remote sensing is heading towar...
Multitude applications of photonic devices and technologies for the generation and manipulation of a...
The research described in this thesis was focused on the design, fabrication, and characterization o...
Today, continuously growing wireless traffic have guided the progress in the wireless communication ...
It is known that the high performance radars and communication systems require the use of phased arr...
In this chapter, elaborating the direction of designing photonics-based beamforming networks (BFN) f...