Mathematical model of optimal distribution of information data flows in the P2P-networks

2020 ◽  
Author(s):  
Soltan I. Salpagarov
2014 ◽  
Vol 711 ◽  
pp. 112-116
Author(s):  
Jian Guo Jin ◽  
Jing Wen Yu ◽  
Li Hua Cao

According to the thermal experiment data and correction curve of heat supply units, the mathematical analysis formula of thermodynamic characteristic has been given accurately in this paper. Moreover, the mathematical model with objective function and the constraint condition for parallel operation of several heat supply units has been built up. By using simplex method and improved SCDD(Synthesized Constrained Dual Descent) method on the basis of the mathematical model, optimal distribution of heat and power load between heat supply units has been realized, and result indicates that this model is reliable and may achieve the goal of energy conservation.


Author(s):  
М.С. Рыкшин

В статье рассматривается модель распределенной автоматизированной системы информационного мониторинга в режиме реального времени в условиях нестационарной нагрузки. Приведена структура, описана математическая модель, представлен алгоритм и некоторые результаты исследований. The article discusses a model of a distributed automated information monitoring system in real time under non-stationary load conditions. The structure is given, a mathematical model is described, an algorithm and some research results are presented.


2015 ◽  
Vol 8 (2) ◽  
pp. 63-67
Author(s):  
Сушков ◽  
Sergey Sushkov ◽  
Бурмистрова ◽  
Olga Burmistrova

In the article the mathematical model of the optimal distribution of traffic between the various modes of transport. The model of the distribution of the requirements of traffic by mode of transport, the optimal cost function at the railway timber transportation option and function of the optimal scheme of cargo flows, taking into account interoperability timber. The solution of these tasks to determine the scope of rational road and rail transport under various conditions.


2019 ◽  
Author(s):  
soumya banerjee

The immune system can detect and respond against pathogens in time that does not varywith the size of the host animal. We suggest that this is due to the architecture of lymphnodes. Lymph nodes are anatomical structures that facilitate the otherwise serendipitousencounter of immune system cells with pathogens. We develop two complementarymathematical approaches to derive the optimal distribution of lymph nodes that enable arapid immune response. Our work gives insights into the optimal design and architectureof the immune system and provides valuable inspiration for designing efficientcomputing systems.


Author(s):  
Т.С. Рожкова ◽  
А.А. Невров ◽  
И.И. Ветров

В статье рассматривается модель распределения ресурсов сети, представленной множеством разнородных мобильных устройств, разнесенных в пространстве, обладающих возможностью динамического выхода из системы и перемещения в ней. Описана математическая модель и приведены результаты ее применения. The model of the distribution of network resources is discusses in the article. The network is represented by a multitude of heterogeneous mobile devices, spaced apart, with the ability to dynamically leaving the system and moving in it. A mathematical model is described and the results of its application are presented.


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