Javascript must be enabled to continue!
Finite element analysis and design of beam steering devices with global control
View through CrossRef
Purpose
This paper aims to design metaguide- or metasurface-based compact inexpensive beam-steering devices, which play an important role in modern cellular networks, radar imaging and satellite communication.
Design/methodology/approach
This paper uses finite element analysis to study, design and optimize arrays of resonating elements as beam steering devices. The first set of such devices involves metamaterial-based apertures fed by a waveguide, tunable via the permittivity of the host material. In the second approach, dynamic beam steering is effected by alternating between two or more waveguide feeds.
Findings
Particular examples show how the direction of the main lobe of the radiated beam can be reliably switched by approximately 30° in one of the quadrants by changing a single global control parameter within a very reasonable range.
Research limitations/implications
The findings pave the way for the design and fabrication of inexpensive compact beam steering devices. This study anticipates that the proposed designs can be further improved and fine-tuned using “heavy duty” optimization packages.
Originality/value
In many published designs of similar beam-steering devices, the radiation pattern of an array of resonating elements is controlled by complex circuitry, so that each radiating element is tuned separately. In contrast with these existing approaches, the designs rely just on a simple global control parameter.
Title: Finite element analysis and design of beam steering devices with global control
Description:
Purpose
This paper aims to design metaguide- or metasurface-based compact inexpensive beam-steering devices, which play an important role in modern cellular networks, radar imaging and satellite communication.
Design/methodology/approach
This paper uses finite element analysis to study, design and optimize arrays of resonating elements as beam steering devices.
The first set of such devices involves metamaterial-based apertures fed by a waveguide, tunable via the permittivity of the host material.
In the second approach, dynamic beam steering is effected by alternating between two or more waveguide feeds.
Findings
Particular examples show how the direction of the main lobe of the radiated beam can be reliably switched by approximately 30° in one of the quadrants by changing a single global control parameter within a very reasonable range.
Research limitations/implications
The findings pave the way for the design and fabrication of inexpensive compact beam steering devices.
This study anticipates that the proposed designs can be further improved and fine-tuned using “heavy duty” optimization packages.
Originality/value
In many published designs of similar beam-steering devices, the radiation pattern of an array of resonating elements is controlled by complex circuitry, so that each radiating element is tuned separately.
In contrast with these existing approaches, the designs rely just on a simple global control parameter.
Related Results
Effects of steering of tracked combine harvester on shear damage of paddy field soil
Effects of steering of tracked combine harvester on shear damage of paddy field soil
During steering, the slide and slip of the tracked combine harvester relative to the ground will cause serious shear damage to the soil and reduce the steering performance of the v...
Experimental Analysis of Steering System Moan Noise
Experimental Analysis of Steering System Moan Noise
<div class="section abstract"><div class="htmlview paragraph">Steering system is responsible for providing a precise directional control to the vehicle. The Hydraulic P...
Hybrid Mechanical and Electronic Beam Steering for Maximizing OAM Channel Capacity
Hybrid Mechanical and Electronic Beam Steering for Maximizing OAM Channel Capacity
Radio frequency-orbital angular momentum (RF-OAM) is a novel approach of multiplexing a set of orthogonal modes on the same frequency channel to achieve high spectrum efficiencies....
A Review of Various Approaches for Beam Steering in Lens Antenna Authors Avinash Saroj
A Review of Various Approaches for Beam Steering in Lens Antenna Authors Avinash Saroj
In this paper, we will be reviewing beam steering application using lens antenna. Various approaches are available for achieving beam steering of lens antennas for different applic...
Control of A Trident Steering Walker
Control of A Trident Steering Walker
This paper introduces and describes a new type of wheeled locomotor, which we refer to as a “trident steering walker.” The wheeled locomotor is a nonholonomic m...
Steering Strategy for a Multi-Axle Wheeled Vehicles
Steering Strategy for a Multi-Axle Wheeled Vehicles
This paper presents a mathematical model for multi-axle steering vehicles operating on level ground. For transporting heavy loads vehicles with multiple axles are required. Apart f...
Development of Lateral Control for Different Electric Vehicle Drive and Steering Systems
Development of Lateral Control for Different Electric Vehicle Drive and Steering Systems
It is necessary to implement a stable and robust longitudinal and lateral motion control for autonomous vehicles to follow the trajectory precisely, and especially crucial for emer...

