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自然条件下同级消费者中种群平均规模的博弈论研究
引用本文:姜殿玉,张盛开,丁德文.自然条件下同级消费者中种群平均规模的博弈论研究[J].生物数学学报,2006,21(2):233-236.
作者姓名:姜殿玉  张盛开  丁德文
作者单位:1. 淮海工学院,数理科学系,江苏,连云港,222005;大连轻工业学院,运筹管理研究所,辽宁,大连,116034;大连海事大学,环境科学与工程学院,辽宁,大连,116026
2. 大连轻工业学院,运筹管理研究所,辽宁,大连,116034
3. 大连海事大学,环境科学与工程学院,辽宁,大连,116026
基金项目:国家自然科学基金资助课题(78970025),江苏省高校自然科学研究计划项目(05KJD110027)
摘    要:给出了一种新的博弈——非合作n人条件博弈,并给出了它的求解方法.以这种博弈为工具,在适当的假定下研究了无人类的理想地域上同级消费者中各个种群的平均规模.结论是:当个体的平均食量充分小时,该种群的平均规模等于前一级消费者或生产者的最大承受量;否则该种群的平均规模与前一级消费者或生产者的最大承受量成正比,与个体的平均食量和该级消费者中种群的数目都成反比.

关 键 词:n人非合作条件博弈  同级消费者  平均规模  平均食量  最大承受量
文章编号:1001-9626(2006)02-0233-04
收稿时间:2004-09-23
修稿时间:2004年9月23日

Game Theory Study on Average Scale of Population in Same Level Consumers Under Natural Condition
JIANG Dian-yu,ZHANG Sheng-kai,DING De-wen.Game Theory Study on Average Scale of Population in Same Level Consumers Under Natural Condition[J].Journal of Biomathematics,2006,21(2):233-236.
Authors:JIANG Dian-yu  ZHANG Sheng-kai  DING De-wen
Institution:1 Department of Mathematics and Physics, Huaihai Technology Institute, Lianyungang Jiangsu 222005 China;2 Research Institute of OR and Manegement, Daiian Institute of Light Industry, Dalian Liaoning 116034 China;3 Institute of Environmental Science and Engineering, Maritime University of Dalian, Dalian Liaoning 116026 China
Abstract:In this paper, we give a new game, n-person non-cooperative condition game, and its algorithm. By this game tool, we study average scale of population in same level consumers on an ideal region without mankind under a suitable assumption. Our result is the follows. Average scale of a population is the greatest load of the front level consumer or producer if average capacity for eating of its individual is sufficiently small. If not, average scale of the population is directly proportion to the greatest load of the front level consumer or producer, and it is inversely proportion to average capacity for eating of its individual and to number of populations in the level.
Keywords:N-person non-cooperative condition game  Same level consumers  Average scale  Average capacity for eating  Greatest load  
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