KEYWORDS: Transformers, Networks, Chemical elements, Medium wave, Mathematical modeling, Telecommunications, Energy efficiency, Network architectures, Data centers, Resistance
A new method for transmission losses allocation in and multiple-transaction system is presented. The proposed scheme is based on expressing losses explicitly in terms of the transactions in the system and requires power flow solution. The advantage of this method is that, unlike other proposed approaches, it does not require any simplifying assumptions. The loss allocation process emphasizes current rather than power injections, an approach that is leads to a natural separation of system losses among the network nodes.
The paper contains the method of matching generation graph of photovoltaic electric stations and consumers. Characteristic feature of this method is the application of morphometric analysis for assessment of non-uniformity of the integrated graph of energy supply, optimal coefficients of current distribution, that enables by mean of refining the powers, transferring in accordance with the graph, to provide the decrease of electric energy losses in the grid and transport task, as the optimization tool.
Presented in the paper are direct and indirect correspondence rules between the set of real and complex coefficients of two interrelated linear differential equations of random order, each of them being able in an individual and independent way to describe uninterrupted movement of generalized, in terms of the number of freedom degrees, dynamic system with lumped parameters in the fundamental Cauchy problem, which is formulated in the first case in terms of real time functions, and in another case – in terms of their complex images, which allows directly to set one of the said forms of Cauchy problem based on the other one both in the generalized form as to the order of differential equation and in particular form under given conditions, regardless of the physical nature of the system under examination.
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