This paper presents a circularly polarized flexible and transparent circular patch antenna suitable for body-worn wireless-communications. Circular polarization is highly beneficial in wearable wireless communications, where antennas, as a key component of the RF front-end, operate in dynamic environments, such as the human body. The demonstrated antenna is realized with highly flexible, robust and transparent conductive-fabric-polymer composite. The performance of the explored flexible-transparent antenna is also compared with its non-transparent counterpart manufactured with non-transparent conductive fabric. This comparison further demonstrates the suitability of the proposed materials for the target unobtrusive wearable applications. De...
By employing circularly polarized antennas, it is possible to prevent polariza-tion mismatch losses ...
Abstract A flexible circularly polarized (CP) wearable antenna is proposed for a wireless body area ...
Theoretical thesis.Bibliography: pages 127-142.1. Introduction -- 2. PDMS-embedded conductive fabric...
This paper presents a circularly polarized flexible and transparent circular patch antenna suitable ...
A compact and simple structure antenna for wearable application at 2.4 GHz is presented and studied...
A compact and simple structure antenna for wearable application at 2.4 GHz is presented and studied....
A new flexible circularly polarized (CP) wearable antenna is proposed for Wireless BodyArea Network ...
In this paper, a detailed investigation of the realization of conformal wearable transparent antenna...
Wearable antennas have gained much attention in recent years due to their attractive features and po...
Wearable antennas have grown in popularity in recent years as a result of their appealing features a...
Recently, wearable electronic applications have arising in the commercial market. There has been gro...
International audienceOptically transparent flexible tag antennas are highly desired for some applic...
Flexible wearable antennas and their components are a fast growing research topic in modern communi...
In this paper, we investigate the applicability of polydimethylsiloxane (PDMS)-conductive textile co...
We present a wearable passive UHF RFID tag based on a circularly polarized (CP) patch antenna on a t...
By employing circularly polarized antennas, it is possible to prevent polariza-tion mismatch losses ...
Abstract A flexible circularly polarized (CP) wearable antenna is proposed for a wireless body area ...
Theoretical thesis.Bibliography: pages 127-142.1. Introduction -- 2. PDMS-embedded conductive fabric...
This paper presents a circularly polarized flexible and transparent circular patch antenna suitable ...
A compact and simple structure antenna for wearable application at 2.4 GHz is presented and studied...
A compact and simple structure antenna for wearable application at 2.4 GHz is presented and studied....
A new flexible circularly polarized (CP) wearable antenna is proposed for Wireless BodyArea Network ...
In this paper, a detailed investigation of the realization of conformal wearable transparent antenna...
Wearable antennas have gained much attention in recent years due to their attractive features and po...
Wearable antennas have grown in popularity in recent years as a result of their appealing features a...
Recently, wearable electronic applications have arising in the commercial market. There has been gro...
International audienceOptically transparent flexible tag antennas are highly desired for some applic...
Flexible wearable antennas and their components are a fast growing research topic in modern communi...
In this paper, we investigate the applicability of polydimethylsiloxane (PDMS)-conductive textile co...
We present a wearable passive UHF RFID tag based on a circularly polarized (CP) patch antenna on a t...
By employing circularly polarized antennas, it is possible to prevent polariza-tion mismatch losses ...
Abstract A flexible circularly polarized (CP) wearable antenna is proposed for a wireless body area ...
Theoretical thesis.Bibliography: pages 127-142.1. Introduction -- 2. PDMS-embedded conductive fabric...