Application of energy performance contracts for rural remote areas electrification
The article is devoted to the application of energy performance contracts for the electrification of rural remote areas. The research presents a universal methodology for determining the main parameters of an energy performance contract. This methodology includes four main parts. The first part has...
Main Authors: | , , , , |
---|---|
Format: | Article |
Language: | English |
Published: |
Elsevier
2022-11-01
|
Series: | Energy Reports |
Subjects: | |
Online Access: | http://www.sciencedirect.com/science/article/pii/S2352484722017024 |
_version_ | 1797900609090748416 |
---|---|
author | Dmitriy N. Karamov Ilya M. Minarchenko Pavel V. Ilyushin Konstantin V. Suslov Sergey P. Filippov |
author_facet | Dmitriy N. Karamov Ilya M. Minarchenko Pavel V. Ilyushin Konstantin V. Suslov Sergey P. Filippov |
author_sort | Dmitriy N. Karamov |
collection | DOAJ |
description | The article is devoted to the application of energy performance contracts for the electrification of rural remote areas. The research presents a universal methodology for determining the main parameters of an energy performance contract. This methodology includes four main parts. The first part has a description of the climatic parameters on the territory under consideration and their use in mathematical modeling of isolated photovoltaic system operating modes. The second part has the mathematical models of an isolated photovoltaic system with battery energy storage system and diesel power plant. The third part consist of relevant questions and features of battery energy storage system operation in isolated energy systems. The fourth part is a hierarchical model of an energy performance contract. The model has the main indicators required for the client and contractor. These parameters are contract duration, contractor fee, modified levelized cost of energy and optimal composition of isolated energy system equipment. An isolated energy system located on the territory of Siberia was considered. The optimization results have the following key indicators: photovoltaic system (80 kW) with battery energy storage system (240 kW⋅h) reduces diesel fuel consumption by 68%. The energy performance agreement duration is 5 years and the modified levelized cost of energy is 15.53 RUB/kW⋅h. |
first_indexed | 2024-04-10T08:48:41Z |
format | Article |
id | doaj.art-0eb6a24456534864a258c3a56971294f |
institution | Directory Open Access Journal |
issn | 2352-4847 |
language | English |
last_indexed | 2024-04-10T08:48:41Z |
publishDate | 2022-11-01 |
publisher | Elsevier |
record_format | Article |
series | Energy Reports |
spelling | doaj.art-0eb6a24456534864a258c3a56971294f2023-02-22T04:31:40ZengElsevierEnergy Reports2352-48472022-11-01813771386Application of energy performance contracts for rural remote areas electrificationDmitriy N. Karamov0Ilya M. Minarchenko1Pavel V. Ilyushin2Konstantin V. Suslov3Sergey P. Filippov4Energy Research Institute of the Russian Academy of Sciences, Nagornaya st., 31, Building 2, Moscow, 117186, Russia; Corresponding author.Melentiev Energy Systems Institute of Siberian Branch of the Russian Academy of Sciences, Lermontov st. 130, Irkutsk, 664033, RussiaEnergy Research Institute of the Russian Academy of Sciences, Nagornaya st., 31, Building 2, Moscow, 117186, RussiaIrkutsk National Research Technical University, Lermontov st., 83, Irkutsk 664074, RussiaEnergy Research Institute of the Russian Academy of Sciences, Nagornaya st., 31, Building 2, Moscow, 117186, RussiaThe article is devoted to the application of energy performance contracts for the electrification of rural remote areas. The research presents a universal methodology for determining the main parameters of an energy performance contract. This methodology includes four main parts. The first part has a description of the climatic parameters on the territory under consideration and their use in mathematical modeling of isolated photovoltaic system operating modes. The second part has the mathematical models of an isolated photovoltaic system with battery energy storage system and diesel power plant. The third part consist of relevant questions and features of battery energy storage system operation in isolated energy systems. The fourth part is a hierarchical model of an energy performance contract. The model has the main indicators required for the client and contractor. These parameters are contract duration, contractor fee, modified levelized cost of energy and optimal composition of isolated energy system equipment. An isolated energy system located on the territory of Siberia was considered. The optimization results have the following key indicators: photovoltaic system (80 kW) with battery energy storage system (240 kW⋅h) reduces diesel fuel consumption by 68%. The energy performance agreement duration is 5 years and the modified levelized cost of energy is 15.53 RUB/kW⋅h.http://www.sciencedirect.com/science/article/pii/S2352484722017024Renewable energy sourcesEnergy performance contractHierarchical bilevel modelBattery energy storage systemIsolated energy systemRural remote areas |
spellingShingle | Dmitriy N. Karamov Ilya M. Minarchenko Pavel V. Ilyushin Konstantin V. Suslov Sergey P. Filippov Application of energy performance contracts for rural remote areas electrification Energy Reports Renewable energy sources Energy performance contract Hierarchical bilevel model Battery energy storage system Isolated energy system Rural remote areas |
title | Application of energy performance contracts for rural remote areas electrification |
title_full | Application of energy performance contracts for rural remote areas electrification |
title_fullStr | Application of energy performance contracts for rural remote areas electrification |
title_full_unstemmed | Application of energy performance contracts for rural remote areas electrification |
title_short | Application of energy performance contracts for rural remote areas electrification |
title_sort | application of energy performance contracts for rural remote areas electrification |
topic | Renewable energy sources Energy performance contract Hierarchical bilevel model Battery energy storage system Isolated energy system Rural remote areas |
url | http://www.sciencedirect.com/science/article/pii/S2352484722017024 |
work_keys_str_mv | AT dmitriynkaramov applicationofenergyperformancecontractsforruralremoteareaselectrification AT ilyamminarchenko applicationofenergyperformancecontractsforruralremoteareaselectrification AT pavelvilyushin applicationofenergyperformancecontractsforruralremoteareaselectrification AT konstantinvsuslov applicationofenergyperformancecontractsforruralremoteareaselectrification AT sergeypfilippov applicationofenergyperformancecontractsforruralremoteareaselectrification |