A dual-band antenna is designed for a fall-detection radar and telemetry system. The radar is designed based on the stepped frequency continuous wave (SFCW) concept, which requires Ultra Wideband (UWB) operation, low inter-element coupling and a directive radiation pattern with low backlobe. The telemetry system uses the 2.45 GHz band to enable signal transmission/reception in an indoor environment and the 6-7.5 GHz band for radar sensing part. A main dual-band radiator with a slotted patch is used as the basis for the antenna design: the patch resonates at 2.45 GHz whereas the antenna slot enables a wide band operation for the radar system. To enable a low-profile, an artificial magnetic conductor (AMC) structure is integrated into the ant...
Funding Information: This work was supported in part by Saab AB. The work of Mikko K. Leino was supp...
International audienceThis study focuses on the design, simulation, and fabrication of a coplanar wa...
A CPW-fed triple band slot-patch antenna is designed to resonate at 3.60 GHz, 5.86 GHz and 8.53 GHz....
This paper presents the evaluation of two antenna designs aimed for a Step Frequency Continuous Wave...
This paper discusses the antenna design for a SFCW radar sensor aimed for remote health monitoring. ...
This paper proposed a design of dual substrate layer Artificial Magnetic Conductor (AMC) which opera...
A dual band Artificial Magnetic Conductor (AMC) with capacitive tuning of reflection phase at lower ...
International audienceWe present the design and characterization of a triband low-profile antenna ba...
A 5.8 – 7.02 GHz radar sensor for remote health monitoring is reported. A proper radar waveform has ...
This paper presents a tunable Artificial Magnetic Conductor (AMC) unit cell design by means of four ...
Recently, the development of wireless communication has led to a great demand of compact and wideban...
Radar is a technology that is widely used in many diverse areas; from monitoring space down to ocean...
When a wideband antenna is backed by an artificial magnetic conductor (AMC) reflector, the bandwidth...
The configurations of single patch antenna integrated with three different designs of patch artifici...
In this paper, an approach for designing a compact microstrip antenna array using Artificial Magneti...
Funding Information: This work was supported in part by Saab AB. The work of Mikko K. Leino was supp...
International audienceThis study focuses on the design, simulation, and fabrication of a coplanar wa...
A CPW-fed triple band slot-patch antenna is designed to resonate at 3.60 GHz, 5.86 GHz and 8.53 GHz....
This paper presents the evaluation of two antenna designs aimed for a Step Frequency Continuous Wave...
This paper discusses the antenna design for a SFCW radar sensor aimed for remote health monitoring. ...
This paper proposed a design of dual substrate layer Artificial Magnetic Conductor (AMC) which opera...
A dual band Artificial Magnetic Conductor (AMC) with capacitive tuning of reflection phase at lower ...
International audienceWe present the design and characterization of a triband low-profile antenna ba...
A 5.8 – 7.02 GHz radar sensor for remote health monitoring is reported. A proper radar waveform has ...
This paper presents a tunable Artificial Magnetic Conductor (AMC) unit cell design by means of four ...
Recently, the development of wireless communication has led to a great demand of compact and wideban...
Radar is a technology that is widely used in many diverse areas; from monitoring space down to ocean...
When a wideband antenna is backed by an artificial magnetic conductor (AMC) reflector, the bandwidth...
The configurations of single patch antenna integrated with three different designs of patch artifici...
In this paper, an approach for designing a compact microstrip antenna array using Artificial Magneti...
Funding Information: This work was supported in part by Saab AB. The work of Mikko K. Leino was supp...
International audienceThis study focuses on the design, simulation, and fabrication of a coplanar wa...
A CPW-fed triple band slot-patch antenna is designed to resonate at 3.60 GHz, 5.86 GHz and 8.53 GHz....