Informacje szczegółowe
- Akronim projektu:
- iMAGS
- Program finansujący:
- Polsko-niemiecki Program Badawczy
- Instytucja:
- Narodowe Centrum Badań i Rozwoju (NCBR) (The National Centre for Research and Development)
- Porozumienie:
- WPN/4/66/i-MAGS/2022 z dnia 2022-12-08
- Okres realizacji:
- brak danych - brak danych
- Kierownik projektu:
- dr hab. inż. Łukasz Kulas
- Realizowany w:
- Katedra Inżynierii Mikrofalowej i Antenowej
- Instytucje zewnętrzne
biorące udział w projekcie: -
- EC Sense GmbH (Niemcy)
- Fraunhofer EMFT: Fraunhofer Research Institution for Microsystems and Solid State Technologies EMFT (Niemcy)
- ISS RFID sp. z o.o. (Polska)
- Wartość projektu:
- 609 263.03 EUR
- Typ zgłoszenia:
- Międzynarodowy Program Badawczy
- Pochodzenie:
- Projekt zagraniczny/międzynarodowy
- Weryfikacja:
- Politechnika Gdańska
Publikacje powiązane z tym projektem
Filtry
wszystkich: 3
Katalog Projektów
Rok 2024
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Connectivity Improvement in Wireless Sensor Networks Using ESPAR Antennas with Dielectric Overlays
PublikacjaThis article presents an electrically steerable parasitic array radiator (ESPAR) switched beam antenna with a dielectric overlay to miniaturize the antenna and modify the radiation pattern in the vertical plane. The antenna is intended for a gateway in a wireless sensor network (WSN) and is located on the ceiling of a room. Because the ESPAR antenna consists of an array of vertical monopoles, there is a deep minimum in the radiation...
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Influence of 3D Printed Overlay Infill Patterns on Miniaturized ESPAR Antenna Performance
PublikacjaIn this article, we show how different infill patterns influence the overall performance of miniaturized electrically steerable parasitic array radiator (ESPAR) antenna. The use of 3D printed dielectric overlays is a simple and flexible way to miniaturize ESPAR antennas, so they are more compact and can be better integrated with wireless sensor network (WSN) nodes or gateways in different application areas. Additionally, such overlays...
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Miniaturized and Lightweight ESPAR Antenna for WSN and IoT Applications
PublikacjaA new compact ESPAR antenna is investigated in this paper. The proposed antenna has 12 directional radiation patterns based on 12 passive elements and can be successfully used in Wireless Sensor Network applications. In proposed antenna design, the possibilities of 3D printing were used to implement a dielectric miniaturization overlay that allowed for reducing antenna occupied area by almost 60% and antenna profile by 27% in comparison...
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