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Number of results: 5
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Abstract

The article is devoted to topical issues of energy saving management of a business organization.

The concept and essence of saving are considered. Based on the systematization of the totality of

manifestations of saving energy, the following types are distinguished: economic, ecological, ecological-

economic, reputation and social. External and internal factors of saving energy in a business

organization are identified, which reflect the conditions of its operation in the context of saving

energy. It is determined that energy efficiency barriers, which are proposed to be divided into technical-

economic, organizational-behavioral and cognitive, characterize the energy saving process in

terms of restraining factors in improving the efficiency of fuel and energy resources, reflect specific

obstacles within the energy saving process in a particular business organizations and are of an

intra-organizational nature. It is determined that to improve energy saving processes in a business

organization the use cycles of continuous development, in particular, the Deming cycle is advisable.

For the purposes of energy management, the use an appropriate business model that determines

the order of formation of the economic advantage of the entity through energy savings and reflects

a set of solutions that characterize the process of creating value for stakeholders are advisable.

Based on the formalization of the business model of energy efficiency of the business organization,

the use of an saving energy program aimed at removing barriers to energy efficiency and the impact

on internal energy saving factors, as they are the levers that a business organization can influence to

improve energy efficiency, is proposed.

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Authors and Affiliations

Olena Shatilova
ORCID: ORCID
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Abstract

The impact of harmonic distortions on power grids is a major issue in contemporary power networks as a result of the extensive application of non-linear loads. The purpose of this article is to explore the problem of harmonic distortion in power grids and its impact on the elements of the power grid, such as cable lines and transformers. The Schaffner PQS software product was used in this study to model power grids. New techniques for modeling power grids and finding technical solutions that meet the IEEE 519-2014 standard were introduced. The study finds that harmonic distortion can lead to an additional heat load being placed on cable lines and reduces the power available to transformers, which can decrease their rated power. The application of modern software reduces the time and complexity of calculations, and the availability of software solutions for limiting harmonic distortion simplifies the creation of solutions that meet this standard. Using the methods presented in the study, engineering solutions can be improved, the reliability of electrical systems can be increased, and the loss of electrical energy can be reduced. This can enhance efficiency for design engineers and technical specialists involved in the operation of power grids.
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Authors and Affiliations

Juliya Malogulko
1
ORCID: ORCID
Vira Teptia
1
ORCID: ORCID
Natalia Ostra
1
ORCID: ORCID
Olena Sikorska
1
ORCID: ORCID
Kateryna Povstianko
1
ORCID: ORCID

  1. Vinnytsia National Technical University, Ukraine
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Abstract

Smart farming is about managing a farm using modern information and communication techniques in order to increase the efficiency and quality of plant and animal production and to optimise human labour inputs. It is an inseparable part of a sustainable agricultural economy, where energy-saving and low-emission solutions are of particular importance, e.g. in livestock construction. Animal buildings are one of the main building elements of a farm. The paper presents the use of modern solutions that may result in lower energy consumption, and thus lower operating costs of the building. They also reduce the consumption of natural resources and the emission of pollutants, and ensure animal welfare and safety of the operators’ work. Rational use of energy depends, among others, on from the used insulation materials for the construction of livestock buildings, technical equipment, i.e. lighting, heating, ventilation, as well as zootechnical devices. The profitability of livestock production can also be supported by the use of solar, wind, water and biomass energy. Photovoltaic cells, solar collectors, wind turbines, heat pumps and agricultural biogas plants are used for this purpose.
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Authors and Affiliations

Anna M. Bartkowiak
1
ORCID: ORCID

  1. Institute of Technology and Life Sciences – National Research Institute, Falenty, Hrabska Av. 3, 05-090 Raszyn
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Abstract

The paper presents a method for improving the lime production process by increasing the efficiency of the lime slurry transport that occurs in it. The aim of the study was to reduce the energy demand of the pump installed in the discharge line. The presented solution consists of applying an additive called deflocculant to the transported slurry in order to reduce its viscosity while increasing the concentration of solids content. The deflocculant applied to the slurry is composed of waste material from the lime slaking process and an environmentally neutral chemical substance in the form of sodium-water glass. The rheological studies conducted confirm the positive effect of the selected deflocculant on the properties of the slurry tested. As a result of the analysis, it has been shown that the proposed solution has a substantial effect on reducing the friction factor of the transported slurry, thus reducing the energy consumption in the investigated process.
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Authors and Affiliations

Beata Joanna JAWORSKA-JÓZWIAK
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Abstract

Current networks are designed for peak loads leading to low utilization of power resources. In order to solve this problem, a heuristic energy-saving virtual network embedding algorithm based on the Katz centrality (Katz-VNE) is proposed. For solving an energy-saving virtual network embedding problem, we introduce the Katz centrality to represent the node influence. In order to minimize the energy consumption of the substrate network, the energy-saving virtual network embedding problem is formulated as an integer linear program, and the Katz-VNE is used to solve this problem. The Katz-VNE tries to embed the virtual nodes onto the substrate nodes with high Katz centrality, which is effective, and uses the shortest paths offering the best factor of bandwidths to avoid the hot nodes. The simulation results demonstrate that the long-term average energy consumption of the substrate network is reduced significantly, and the long-term revenue/cost ratio, the acceptance rate of virtual network requests, and the hibernation rate of substrate nodes as well as links are improved significantly.

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Authors and Affiliations

Qiang Zhu
Qing-Jun Wang
Mu-Jun Zang
Zhen-Dong Wang
Chang Xiao

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