By F. Schmidt (auth.), M. Catherine Majumdar, Debu Majumdar, John I. Sackett (eds.)
This convention introduced jointly specialists from 15 nations to debate program of man-made Intelligence (AI) suggestions to the nuclear undefined. It used to be obvious from the assembly that even these lively within the box have been shocked on the volume of labor and the development made. there has been a robust impact that software of this expertise to nuclear energy vegetation is inevitable. the advantages to stronger operation, layout, and security are just too major to be neglected. it is a a lot various end than could have been reached many years in the past while the expertise used to be new and folks have been suffering to appreciate its importance. We think that this assembly displays an incredible turning aspect for the know-how. It has moved from being an issue understood in basic terms through experts to a state of affairs the place clients are the main lively humans within the box. A vast array of cutting edge paintings is defined from all the partaking international locations. The job within the u.s. is huge and numerous. even supposing there is not any nationally focussed coverage for AI learn within the united states, a lot of those actions are said right here. Japan and France have a powerful force to combine AI expertise into their nuclear vegetation, and this can be reflecteq in those proceedings.
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Extra resources for Artificial Intelligence and Other Innovative Computer Applications in the Nuclear Industry
0. S. Larsen, T. Westgaard, C. Holmstrom, H. Andersson, S. Jakobsson, R. Heinonen, T. Kukko, The Institute for Energy Technology, HWR-193, 1987. A preliminary specification for a multifunctional support system in emergency management, applying expert system technology. 0. S. Larsen, T. westgaard, C. Holmstrom, H. Andersson, S. Jakobsson, R. Heinonen, T. Kukko, The Institute for Energy Technology, HWR-205, 1987. Framework for modelling decision making contexts. Jens Rasmussen, Ris¢ National Laboratory, N-6-86, March 1986.
E. nuclear power plants) model, and good/bad judgments are made in the domain. Then these judgments are interpreted based on the domain knowledge base to identify plant situation and to formulate current plant goal. Then to achieve the goal, the domain knowledge base is investigated to synthesize the appropriate procedures. e. electricity production and safety are set at the top level. These two goals are represented by the respective flow structures. The production goal is represented by the energy flow from nuclear energy source to electric power grid and the safety goal is represented and maintained by many barriers between fission products in the fuel and the environment.
FUTURE PLANS Having the first proposal of a prototype system, a test scenario for a limited part of an emergency situation will be designed to make experiments to evaluate empirically the combined effect of the database, the implementation strategy, and the conceptual model for the developed part of the expert system. Through these experiments the prototype system will be optimized by an iterative procedure, and the final product will be used for recommendations and guidelines for a possible further development into an expert system capable of coping with emergency situations in risky industrial plants.