Title :
Ultra-compact bird-borne s-band transceiver aiming to search low pathogenic avian influenza
Author :
Nakajima, Isao ; Androuchko, Leonid ; Kitano, Toshihiko ; Nakada, Kaoru ; Katayama, Masaru
Author_Institution :
Sch. of Med., Tokai Univ., Tokai, Japan
Abstract :
We produced an ultra-compact bird-borne transceiver unit (weight of circuit board(5g) excluding solar battery and rechargeable battery system, harness of the crate) for S-band packet radio communications based on the CC2500 transceiver, a device manufactured by Texas Instruments (TI). We performed assessments to determine optimal parameters required to achieve successful bird-to-center communication over a distance of 18 km and bird-to-bird communication over a distance of 200 m, including optimal modulation method, transmission rates, and antenna. We equipped the transceiver unit with a modified dipole antenna (collinear antenna), which we tested in a 10-m anechoic chamber. Our experimental assessments and circuit design review pointed to the following parameters: 2FSK modulation method; 14.28 kHz frequency shift; 101.56 kHz IF reception bandwidth; and Manchester encoding(+). Our assessments showed bird-to-bird communications could be achieved over a distance of 200 m assuming MSK, FEC(+), and 500 kbps.
Keywords :
Texas Instruments computers; anechoic chambers (electromagnetic); dipole antennas; forward error correction; frequency shift keying; microorganisms; minimum shift keying; packet radio networks; radio transceivers; 2FSK modulation method; CC2500 transceiver; FEC(+); IF reception bandwidth; MSK; Manchester encoding(+); S-band packet radio communication; Texas Instruments; anechoic chamber; bird-to-center communication; bit rate 500 kbit/s; distance 18 km; distance 200 m; frequency 101.56 kHz; frequency 14.28 kHz; frequency shift keying; modified dipole antenna; optimal modulation method; optimal parameter determination; pathogenic avian influenza; size 10 m; transmission rate; ultra compact bird-borne S-band transceiver unit; Abstracts; Batteries; Error analysis; ISO standards;
Conference_Titel :
e-Health Networking, Applications & Services (Healthcom), 2013 IEEE 15th International Conference on
Conference_Location :
Lisbon
Print_ISBN :
978-1-4673-5800-2
DOI :
10.1109/HealthCom.2013.6720727