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Abstract

Ukraine’s commitments under the international framework agreements to reduce CO 2 emissions and the Global Climate Change Initiative provide the basis for the implementation of bioeconomy mechanisms in the country’s Energy Development Strategy until 2035. One of the goals of this strategy is to reduce the consumption of fossil fuels and switch to alternative fuels. The agriculture of Ukraine is assigned the leading role in ensuring the replacement of fossil fuels with biomass of plant origin. The bioenergy potential of the agro-industrial sector of the economy requires extensive research in order to determine and integrate it into the country’s energy sector. The essential characteristics of energy efficiency in the context of the cluster model of organizing the activities of enterprises for the production of biofuel as stable interactions of geographically concentrated economic entities are investigated in this article. Peculiarities of introduction of bioenergy clusters as stable interactions of geographically concentrated business entities (enterprises, suppliers and organizations, including scientific institutions, etc.) have been determined according to a pre-defined and agreed development strategy for all participants without exception at the stage of formation of which the competitive environment is supported taking into account the energy, ecological and socio-economic parameters of the sustainable development of territories. A model of a territorial bioenergy cluster for the production of biofuels from crops and waste was formed and the advantages of creating bioenergy clusters were analyzed. Furthermore, a matrix of a PEST analysis of the formation of bioenergy clusters in Ukraine was formed.
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Authors and Affiliations

Natalia Pryshliak
1
ORCID: ORCID
Valerii Bondarenko
2
ORCID: ORCID
Serhii Sokoliuk
3
ORCID: ORCID
Oleksandr Brovarets
4
ORCID: ORCID

  1. Vinnytsia National Agrarian University, Vinnytsia, Ukraine
  2. Department of Marketing and International Trade, National University of Life and Environmental Sciences of Ukraine, Ukraine
  3. Uman National University of Horticulture, Uman, Ukraine
  4. Kyiv Institute of Business and Law, Kyiv, Ukraine
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Abstract

The purpose of this study is to consider a passive balancing system for battery storage which in the future will increase their reliability, reduce maintenance costs, reduce wear and tear and increase service life, as well as to study a new method of quasi-opposition search for harmony in order to stabilize the supplied electricity. To this end, various theoretical methods of scientific study (analysis, concretization, comparison, generalization) were applied. The method considered in this article for improving the performance of batteries using a passive balancing system, using the example of a typical structural diagram of an autonomous hybrid power plant presented here, would increase the efficiency of pre-project work on the development of highly efficient design and circuit solutions and increase the battery life. The new method of quasi-opposition searches for harmony for hybrid power plants based on renewable and traditional energy sources, taking into account features of their design and operation, would make it possible to stabilize the load frequency of the consumer at the time of switching the station between power sources. This study can be useful for the circle of people associated with energy, for students studying renewable energy in higher education institutions, as well as their teachers, in order to familiarize themselves with the problems of hybrid stations and find options for their solutions.
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Authors and Affiliations

Maksat Sadykov
1
ORCID: ORCID
Aibek Almanbetov
2
ORCID: ORCID
Ilias Ryskulov
2
ORCID: ORCID
Turdumambet Barpybaev
2
ORCID: ORCID
Alaibek Kurbanbaev
3
ORCID: ORCID

  1. International University of Innovative Technologies and Energy, Kyrgyzstan
  2. Institute of Innovative Technologies and Energy, Kyrgyzstan
  3. I. Razzakov Kyrgyz State Technical University, Kyrgyzstan
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Abstract

A review of night vision metrology is presented in this paper. A set of reasons that create a rather chaotic metrologic situation on night vision market is presented. It is shown that there has been made a little progress in night vision metrology during last decades in spite of a big progress in night vision technology at the same period of time. It is concluded that such a big discrep- ancy between metrology development level and technology development can be an obstacle in the further development of night vision technology.

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Authors and Affiliations

Krzysztof Chrzanowski
ORCID: ORCID
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Abstract

In the paper an algorithm and computer code for the identification of the hysteresis parameters of the Jiles-Atherton model have been presented. For the identification the particle swarm optimization method (PSO) has been applied. In the optimization procedure five design variables has been assumed. The computer code has been elaborated using Delphi environment. Three types of material have been examined. The results of optimization have been compared to experimental ones. Selected results of the calculation for different material are presented and discussed. A novel vector operated one-cycle control matrix rectifier (OCC-MR) is proposed in this paper. Matrix rectifier (MR) is a generalized buck three-phase AC-DC converter with four-quadrant operation capability. MR can also be the front-stage circuit of AC-DC-AC equivalent structure of MC. One-cycle control (OCC) is a nonlinear control technique, which integrates modulation algorithm and control strategy. By applying OCC to current control loop, the OCC-MR achieves balance only in a switching cycle,and realizes unitary input power factor. Furthermore, vector operation of OCC results In minimum switching losses. In order to make up for the insufficiency of OCC on load disturbance suppression, a PID controller is added onto output voltage control to improve load regulation. The OCC-MR features great simplicity, fast dynamic response and good immunity on input disturbance. On the basis of theoretical analysis, a systematic simulation of OCC-MR is implemented by means of Matlab/Simulink. Both static state performance and dynamic state performance of OCC-MR are discussed deeply. The simulation results have proved theoretical analysis of the vector operation of OCC-MR, and the control effects are satisfactory.

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Authors and Affiliations

Xinghua Yang
Jianguo Jiang
Xijun Yang

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