Zitieren

Białko, M. (1996). Methods and application of artificial intelligence. Poland: Politechnika Koszalińskia Press. Search in Google Scholar

Cohen, Y., Cohen, A., Hetzroni, A., Alchanatis, V., Broday, D., Gazit, Y. & Timar, D. (2008). Spatial decision support system for Medfly control in citrus. Computers and Electronics in Agriculture. 62, 107-117. Search in Google Scholar

Duch, W. (1997). Fascinating world of computers. Poland: Nakom Press. Search in Google Scholar

Francik, K. & Pudło, M. (2016). Decision Support Systems in the Aspect of Risk Management in Enterprise. Zeszyty Naukowe Politechniki Częstochowskiej. Zarządzanie. 22, 23-32. Search in Google Scholar

Gonzalez-Andujar, J.L., Fernandez-Quintanilla, C., Izquierdo, J. & Urbano, J.M. (2006). SIMCE: An expert system for seedling weed identification in cereals. Computers and Electronics in Agriculture. 54, 115-123. Search in Google Scholar

Górnicki, K. & Sojak, M. (1999). The features of a computer system analyzing processes undergoing in vegetables during drying and storage. In Artificial Intelligence - the new face (research-applications-development) AI-14’99, 29-30.09.1999 (275-280), Poland. Search in Google Scholar

Hermann, O. (2006). Report N° 14. Survey on pests and diseases in red beet growing and the cost of plant protection products in Europe. Poland, Kraków: Sigma-not. Search in Google Scholar

Kaleta, A., Górnicki, K. & Sojak, M. (2005). A decision support system for vegetables quality assessment during drying and storage. In Trajer J. & Jaros M., The application of artificial intelligence for the assessment of changes in the quality of selected vegetables during drying and storage (68-110). Warsaw: SGGW Press. Search in Google Scholar

Kaloudis, S.T., Yialouris, C.P., Lorentzos, N.A., Karteris, M. & Sideridis, A.B. (2010). Forest management planning expert system for wildfire damage reduction. Computers and Electronics in Agriculture. 70, 285-291. Search in Google Scholar

Karmakar, S., Ketia, M.N., Laguë, C. & Agnew, J. (2010). Development of expert system modeling based decision support system for swine manure management. Computers and Electronics in Agriculture. 71, 88-95. Search in Google Scholar

Kuflik, T., Prodorutti, D., Frizzi, A., Gafni, Y., Shoham, S. & Pertot, I. (2009). Optimization of copper treatments in organic viticulture by using a web-based decision support system. Computers and Electronics in Agriculture. 68, 36-43. Search in Google Scholar

Kuo, S.F., Merklem, G.P. & Liu, C.W. (2000). Decision support for irrigation project planning using a genetic al-gorithm. Agriculture Water Management. 45(3), 243-266. Search in Google Scholar

Mahaman, B.D., Harizanis, P., Filis, I., Antonopoulou, E., Yialouris, C.P. & Sideridis, A.B. (2002). A diagnostic expert system for honeybee pests. Computers and Electronics in Agriculture. 36, 17-31. Search in Google Scholar

Mahaman, B.D., Passam, H.C., Sideridis, A.B. & Yialouris, C.P. (2003). DIARES-IPM: a diagnostic advisory rule-based expert system for integrated pest management in Solanaceous crop systems. Computers and Electronics in Agriculture. 76, 1119-1135. Search in Google Scholar

Mann, D., Jayas, D., White, N., Muir, W. & Evans, M. (1997). A grain storage information system for Canadian farmers and grain storage managers. Canadian Agricultural Engineering. 39 (1), 49-56. Search in Google Scholar

Michalik, K. (1998). In-tegrated AI package SPHINX. Knowledge engineer textbook. Katowice: AITECH – Artifical Intelligence Laboratory. Search in Google Scholar

Molina-Martínez, J.M. & Ruiz-Canales, A. (2009). Pocket PC software to evaluate drip irrigation lateral diameters with on-line emitters. Computers and Electronics in Agriculture. 69, 112-115. Search in Google Scholar

Morimoto, T., Purwanto, W., Suzuki, J. & Hashimoto, Y. (1997). Optimization of heat treatment for fruit during storage using neural networks and genetic algorithms. Computers and Electronics in Agriculture. 19, 87-101. Search in Google Scholar

Mulawka, J. (1996). Expert systems. Warszawa. WNT. Search in Google Scholar

Nieć, H. (1989). Root vegetables. Warszawa. PWRiL. Search in Google Scholar

Power, D. J. (2014, August). Decision Support Systems Glossary. Retrieved May 17, 2023, from https://DSSResources.COM/glossary. Search in Google Scholar

Robak, J. & Wiech, K. (1998). Vegetable diseases and pests. Kraków: Plantpress. Search in Google Scholar

Seidel, M., Breslin, C., Christley, R.M., Gettinby, G., Reid, S.W. & Revie, C.W. (2003). Comparing diagnoses from expert systems and human experts. Agricultural Systems. 76, 527-538. Search in Google Scholar

Sojak, M. & Głowacki, S. (2005). Applicability of the expert system for decision support in the process of controlling pests of red beet during its vegetation. Inżynieria Rolnicza. 14(74), 323-330. Search in Google Scholar

Sojak, M. & Trajer, J. (1999). Diagnosis of the condition of vegetables using an expert system. In Trajer J., Methods of computer analysis of the processes undergoing in vegetables during drying and storage (54-59). Warszawa: SGGW Press. Search in Google Scholar

Sojak, M. (1995). Determination of the mass diffusion coefficient in the process of drying red beet. Unpublished master dissertation, SGGW, Warszawa, Poland. Search in Google Scholar

Trajer, J., Górnicki, K. & Sojak, M. (1999). A computer analysis system “Warzywo-Bit”. In Trajer J., Methods of computer analysis of the processes vegetables undergo during drying and storage (60-71). Warszawa. SGGW Press. Search in Google Scholar

Weres, J., Kostrzewski, B. & Rudowicz, J. (1999). A computer system supporting the design of the technology of grain drying and storage. In 2nd National Scientific Conference on “The use of information technologies in agriculture”. Poznań. Search in Google Scholar

Wolniewicz, B. (1997). Tractatus logico-philosophicus, 2nd edition, with amendments: On the Treatise (Wittgenstein, L. 1921). Poland. PWN Scientific Press. Search in Google Scholar

Woźniak, K. & Kosecka, K. (2020). Expert system. Retrieved May 17, 2023, from https://mfiles.pl/pl/index.php/System_ekspercki. Search in Google Scholar