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METHOD FOR DETERMINING THE LEVEL OF TRANSFORM TION SYSTEMS AND bifurcation points in the object of the research

机译:研究对象中确定变换系统和分叉点的级别的方法

摘要

A method of determining the level of transformation of the system and the bifurcation points in research facilities, including the analysis of the behavior of the system, taking into account the density of time determined by the formula: where T - time of the evolutionary development of the system, C - available in the information and synergistic flow system (ISP), A - incoming COI unit of time in the system, k - coefficient of relationship emerging ISP in the unit of time from the system to the incoming, defined as:, t - real time (this time) predusmatrivaetnahozhdenie bifurcation point of the formula: in which change the properties of the system at the level of transformation for k 1 there is a system of transformation scenarios, and with a break of the 2nd kind of density of time at the bifurcation point and continuously over evolutionary time development of the system, determined by the formula: the higher k, that The more different from the effluent entering the system per unit of time, the more changes occur in the system, characterized by transformation, T- start time of evolutionary development at t = 0, to measure the initial density of evolutionary time in C-energy Units of information in the biosphere, and namely, in the case of B A, if B C - transformation system with an offset to the left from the point of bifurcation, B C - transformation of the offset system right from the point of bifurcation
机译:确定系统转换水平和研究设施中分叉点的方法,包括对系统行为的分析,同时考虑由以下公式确定的时间密度:其中T-进化发展的时间系统-C-信息和协同流系统(ISP)中可用,A-系统中传入COI的时间单位,k-从系统到传入的时间单位中出现ISP的关系系数,定义为: ,即公式的t实时(本次)predusmatrivaetnahozhdenie的分叉点:其中,对于k> 1,在变换级别上更改系统的属性存在一个变换方案系统,而第二种类型的分解在分叉点的时间密度以及系统在整个演化时间内的持续时间密度,由以下公式确定:k越大,表示与进入系统的单位流出量的差异越大随着时间的推移,系统中发生的变化更多,其特征在于转化,即t = 0时演化发展的T-起始时间,用以测量生物圈中C能量单位信息的演化时间的初始密度,即在B> A的情况下,如果B> C-从分叉点向左偏移的变换系统,则B

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