Automated remote insect surveillance at a global scale and the internet of things I Potamitis, P Eliopoulos, I Rigakis Robotics 6 (3), 19, 2017 | 109 | 2017 |
Insect biometrics: Optoacoustic signal processing and its applications to remote monitoring of McPhail type traps I Potamitis, I Rigakis, K Fysarakis PloS one 10 (11), e0140474, 2015 | 73 | 2015 |
Automated surveillance of fruit flies I Potamitis, I Rigakis, NA Tatlas Sensors 17 (1), 110, 2017 | 71 | 2017 |
Affordable bimodal optical sensors to spread the use of automated insect monitoring I Potamitis, I Rigakis, N Vidakis, M Petousis, M Weber Journal of Sensors 2018 (1), 3949415, 2018 | 67 | 2018 |
Novel noise-robust optoacoustic sensors to identify insects through wingbeats I Potamitis, I Rigakis IEEE Sensors Journal 15 (8), 4621-4631, 2015 | 61 | 2015 |
Remote monitoring of the Bactrocera oleae (Gmelin)(Diptera: Tephritidae) population using an automated McPhail trap L Doitsidis, GN Fouskitakis, KN Varikou, II Rigakis, SA Chatzichristofis, ... Computers and Electronics in Agriculture 137, 69-78, 2017 | 57 | 2017 |
The electronic McPhail trap I Potamitis, I Rigakis, K Fysarakis Sensors 14 (12), 22285-22299, 2014 | 56 | 2014 |
Measuring the fundamental frequency and the harmonic properties of the wingbeat of a large number of mosquitoes in flight using 2D optoacoustic sensors I Potamitis, I Rigakis Applied Acoustics 109, 54-60, 2016 | 52 | 2016 |
In-vivo vibroacoustic surveillance of trees in the context of the IoT I Potamitis, I Rigakis, NA Tatlas, S Potirakis Sensors 19 (6), 1366, 2019 | 47 | 2019 |
Large aperture optoelectronic devices to record and time-stamp insects’ wingbeats I Potamitis, I Rigakis IEEE Sensors Journal 16 (15), 6053-6061, 2016 | 42 | 2016 |
A “smart” trap device for detection of crawling insects and other arthropods in urban environments P Eliopoulos, NA Tatlas, I Rigakis, I Potamitis Electronics 7 (9), 161, 2018 | 38 | 2018 |
A multispectral backscattered light recorder of insects’ wingbeats I Rigakis, I Potamitis, NA Tatlas, I Livadaras, S Ntalampiras Electronics 8 (3), 277, 2019 | 24 | 2019 |
TreeVibes: modern tools for global monitoring of trees for borers I Rigakis, I Potamitis, NA Tatlas, SM Potirakis, S Ntalampiras Smart Cities 4 (1), 271-285, 2021 | 22 | 2021 |
The e-funnel trap: Automatic monitoring of lepidoptera; a case study of tomato leaf miner II Rigakis, KN Varikou, AE Nikolakakis, ZD Skarakis, NA Tatlas, ... Computers and Electronics in Agriculture 185, 106154, 2021 | 16 | 2021 |
Smart traps for automatic remote monitoring of Rhynchophorus ferrugineus (Coleoptera: Curculionidae) I Potamitis, I Rigakis PeerJ PrePrints, 2015 | 12 | 2015 |
Real time visualization of dynamic magnetic fields with a nanomagnetic ferrolens E Markoulakis, I Rigakis, J Chatzakis, A Konstantaras, E Antonidakis Journal of Magnetism and Magnetic Materials 451, 741-748, 2018 | 11 | 2018 |
A low-cost, low-power, multisensory device and multivariable time series prediction for beehive health monitoring I Rigakis, I Potamitis, NA Tatlas, G Psirofonia, E Tzagaraki, ... Sensors 23 (3), 1407, 2023 | 8 | 2023 |
Integrated Pest Control for the Olive-Fruit Fly: Remote Pest Monitoring and Optimized Bait-Sprays. GN Fouskitakis, L Doitsidis, KN Varikou, II Rigakis, I Sarantopoulos, ... HAICTA, 721-733, 2017 | 5 | 2017 |
Power line network automation over IP D Trichakis, C Chousidis, I Rigakis, E Antonidakis 2012 International Conference on Telecommunications and Multimedia (TEMU …, 2012 | 5 | 2012 |
Inertia sensor detecting materials using electromagnetic signals E Vasilaki, I Rigakis, T Papadoulis, A Staridas, A Psaroudaki, ... WSEAS Trans. Syst 21, 140-146, 2022 | 4 | 2022 |