UZUN MO‘YLOVLI (DOLICHERA) CHIGIRTKASIMON HASHAROTLAR RIVOJLANISHINI HARORAT MA’LUMOTLARI ASOSIDA BASHORAT QILISHNING ZAMONAVIY USULI
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1. Bakthavatsalam N., Vinutha J., Ramakrishna P., Raghavendra A., Ravindra K. V., Verghese A. Autodetection in Helicoverpa armigera (Hubner) // Current Science. – 2016. – Vol. 110, № 12. – P. 2261–2267.
2. Čirjak D., Miklečić I., Pajač Živković I., Jemrić T. Automatic Pest Monitoring Systems in Apple Production under Changing Climatic Conditions // Horticulturae. – 2020. – Vol. 6, № 4. – Art. № 520. – DOI: https://doi.org/10.3390/horticulturae8060520.
3. Drake V.A., Wang H.K., Harman I.T. Insect monitoring radar: remote and network operation // Computers and Electronics in Agriculture. – 2002. – Vol. 35, № 2–3. – P. 77–94.
4. Magarey R.D., Borchert D.M., Fowler G.A. The NCSU/APHIS Plant Pest Forecasting System (NAPPFAST) // Pest Risk Modelling and Mapping for Invasive Alien Species / Ed. R.C. Venette. – Wallingford: CABI, 2015. – P. 82–92.
5. Rydhmer K., Bick E., Still L., Strand A., Luciano R., Helmreich S., Brittany D. Automating insect monitoring using unsupervised near-infrared sensors // Scientific Reports. – 2022. – Vol. 12. – 3 p.
6. Topu S., Adrien P., Gregory M., Thomas P. Monitoring the abundance of flying insects and atmospheric conditions during a 9-month campaign using an entomological optical sensor // Scientific Reports. – 2023. – Vol. 13. – P. 1–9.