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Showing records 31807 to 31831 of 43292. [First] Page: 1 1270 1271 1272 1273 1274 1275 1276 1277 1278 Last
Flexible Loads Scheduling Algorithms for Renewable Energy Communities
Tiago Fonseca, Luis Lino Ferreira, Jorge Landeck, Lurian Klein, Paulo Sousa, Fayaz Ahmed.
February 24, 2023 (v1)
Keywords: Algorithms, energy community, flex-offers, Renewable and Sustainable Energy, Scheduling
Renewable Energy Communities (RECs) are emerging as an effective concept and model to empower the active participation of citizens in the energy transition, not only as energy consumers but also as promoters of environmentally friendly energy generation solutions, particularly through the use of photovoltaic panels. This paper aims to contribute to the management and optimization of individual and community Distributed Energy Resources (DER). The solution follows a price and source-based REC management program, in which consumers’ day-ahead flexible loads (Flex Offers) are shifted according to electricity generation availability, prices, and personal preferences, to balance the grid and incentivize user participation. The heuristic approach used in the proposed algorithms allows for the optimization of energy resources in a distributed edge-and-fog approach with a low computational overhead. The simulations performed using real-world energy consumption and flexibility data of a REC wit... [more]
The Biogas Potential of Oxytree Leaves
Jakub Mazurkiewicz.
February 24, 2023 (v1)
Subject: Environment
Keywords: biogas, biogas plant, digestate, Fermentation, fertilizer, GHG, leaves, methane, Oxytree, Paulownia
This article describes the characteristics of th Oxytree (Paulownia) plant, both in terms of its impact on GHG emissions and its potential use to produce biofuel, i.e., biogas. The described research involved the physico-chemical and elemental analysis of the Oxytree leaf composition and its biogas efficiency depending on the harvesting method. Three different scenarios were considered: the freshest possible leaves—processed immediately after stripping from the living tree; after the first day of collection from pruned or harvested wood; after the first week of collection from pruned or harvested wood. The best results were achieved for the harvest of the freshest leaves—on average 430 m3/Mg (biogas) and 223 m3/Mg (methane) per dry organic mass. The highest yield of biogas in terms of fresh mass (FM) was obtained for leaves fallen and collected after 1 day—123 m3/Mg FM, and 59 m3/Mg FM (methane). Processing Oxytree leaves through anaerobic digestion will contribute to reducing the carb... [more]
Renewable Energy Communities as an Enabling Framework to Boost Flexibility and Promote the Energy Transition
Daniela Proto.
February 24, 2023 (v1)
Undelayable environmental requirements and the energy crisis following the pandemic, further increased by international contingencies, have evidenced the need to push forward with the energy transition and intensify the use of renewable energy to satisfy energy needs, with more flexible, resilient, and sustainable energy being required [...]
Using Machine Learning to Predict Multiphase Flow through Complex Fractures
Allen K. Ting, Javier E. Santos, Eric Guiltinan.
February 24, 2023 (v1)
Keywords: Carbon Dioxide, hydraulic fractures, lattice-Boltzmann, Machine Learning, multiphase flow, time-dependency, unsteady-state
Multiphase flow properties of fractures are important in engineering applications such as hydraulic fracturing, evaluating the sealing capacity of caprocks, and the productivity of hydrocarbon-bearing tight rocks. Due to the computational requirements of high fidelity simulations, investigations of flow and transport through fractures typically rely on simplified assumptions applied to large fracture networks. These simplifications ignore the effect of pore-scale capillary phenomena and 3D realistic fracture morphology (for instance, tortuosity, contact points, and crevasses) that lead to macro-scale effective transport properties. The effect of these properties can be studied through lattice Boltzmann simulations, but they require high performance computing clusters and are generally limited in their domain size. In this work, we develop a technique to represent 3D fracture geometries and fluid distributions in 2D without losing any information. Using this innovative approach, we pres... [more]
Offshore CO2 Capture and Utilization Using Floating Wind/PV Systems: Site Assessment and Efficiency Analysis in the Mediterranean
Douglas Keller Jr, Vishal Somanna, Philippe Drobinski, Cédric Tard.
February 24, 2023 (v1)
Keywords: Carbon Capture, Mediterranean, Methanol, simulation model, solar, Wind
A methanol island, powered by solar or wind energy, indirectly captures atmospheric CO2 through the ocean and combines it with hydrogen gas to produce a synthetic fuel. The island components include a carbon dioxide extractor, a desalinator, an electrolyzer, and a carbon dioxide-hydrogen reactor to complete this process. In this study, the optimal locations to place such a device in the Mediterranean Sea were determined, based on three main constraints: power availability, environmental risk, and methanol production capability. The island was numerically simulated with a purpose built python package pyseafuel. Data from 20 years of ocean and atmospheric simulation data were used to “force” the simulated methanol island. The optimal locations were found to strongly depend on the power availability constraint, with most optimal locations providing the most solar and/or wind power, due to the limited effect the ocean surface variability had on the power requirements of methanol island. Wi... [more]
Distributed Energy Resources: Operational Benefits
Yuriy Bilan, Marcin Rabe, Katarzyna Widera.
February 24, 2023 (v1)
In the current context of energy transition, the first step to ensuring the cost-effectiveness and reliable operation of a network is the use of appropriate planning tools [...]
Sensitivity Analysis of Transcritical CO2 Cycle Performance Regarding Isentropic Efficiencies of Turbomachinery for Low Temperature Heat Sources
Kun-Hsien Lu, Hsiao-Wei D. Chiang, Pei-Jen Wang.
February 24, 2023 (v1)
Subject: Environment
Keywords: isentropic efficiency, recuperator, sensitivity analysis, transcritical CO2, turbomachinery, waste heat recovery
The transcritical CO2 (T-CO2) power cycle using low temperature waste heat is a promising technique for energy saving and environmental protection. However, according to the literature, there is no commercialized unit in service yet. This study provides developers a reference to shorten the design phase of the T-CO2 cycle commercialization process. A sensitivity analysis of the system performance, i.e., thermal efficiency and net power output, regarding the isentropic efficiencies of pump (ηp) and expander (ηe) and the heat source temperature (Th,in) has been carried out using MATLAB and NIST REFPROP database. Simple and recuperative configurations are investigated based on their own optimal working pressures. The results show that the enhancement of ηe has a greater influence on improving the system performance, but the improvement will diminish as ηp, ηe, and Th,in increase. Although better system performance can be achieved with higher ηp, ηe, and Th,in, the cost of the system equip... [more]
Residential Building Construction Techniques and the Potential for Energy Efficiency in Central Asia: Example from High-Altitude Rural Settlement in Kyrgyzstan
Kedar Mehta, Wilfried Zörner, Rick Greenough.
February 24, 2023 (v1)
Subject: Materials
Keywords: building construction, Central Asia, cold climate, earthen high-altitude houses, Energy Efficiency, vernacular buildings
Building construction in rural Kyrgyzstan is heavily dominated by earthen buildings. Old and inappropriate residential building structures contribute significantly to high domestic space heating energy consumption. Therefore, it is necessary to understand the relevant building construction techniques. However, the scant information on Kyrgyz building techniques, especially for high-altitude rural settlements, was the prime motivation to perform the presented study. The key objective of the study is to investigate residential building construction techniques in high-altitude rural Kyrgyzstan, and this was to be achieved by house visits during field trips, literature review, and pilot interviews with local people. The analysis enabled the detailed identification of individual building envelopes as well as predominant building materials to be recorded. Based on the assessment, a housing profile was created that represents the typical characteristics of traditional rural Kyrgyz houses. Fur... [more]
Analysis of the Energy and Material Use of Manure as a Fertilizer or Substrate for Biogas Production during the Energy Crisis
Jakub Mazurkiewicz.
February 24, 2023 (v1)
Subject: Materials
Keywords: biogas plant, cattle, cow manure, digestate, energetic calculation, Fermentation, fertilizer, GHG, milk cows
The main goal of the publication was to show the differences in profit when using manure directly as fertilizer (after the storage period) or as a substrate for biogas plants with a cogeneration unit, and then using the digestate for fertilization purposes. The comparison covers the streams of costs, revenues and profits over the year between 14 October 2021 and 14 October 2022. This period was chosen due to the energy and fertilization crisis caused by the war in Ukraine. Profitability forecasts for biogas investments (including the payback period) are presented, with the reduction of greenhouse gas emissions, i.e., methane and nitrous oxide, taken into account. The performed economic, energy and ecological calculations of manure management can be used as guidelines when considering investing in biogas plants, as well as what is recently becoming a new trend: the carbon footprint of dairy production. Input substrate parameters, gaseous emissions and biogas yields were obtained from ow... [more]
Factoring Permeability Anisotropy in Complex Carbonate Reservoirs in Selecting an Optimum Field Development Strategy
Sergey Krivoshchekov, Alexander Kochnev, Nikita Kozyrev, Evgeny Ozhgibesov.
February 24, 2023 (v1)
Keywords: fractured rock system, permeability, permeability anisotropy, petrophysical correlations, porosity, reservoir simulation model
Current methods of oil and gas field development design rely on reservoir simulation modeling. A reservoir simulation model is a tool to reproduce field development processes and forecast production data. Reservoir permeability is one of the basic properties that determines fluid flow. From existing approaches, the porosity and permeability values should be consistent with petrophysical correlations obtained from core sample tests in the course of development of an absolute permeability cube in the reservoir simulation model. For carbonate reservoirs with complex pore space structure and fractures, the petrophysical correlations are often unstable. To factor in the fluid flow in a fractured rock system, dual-medium models are developed, allowing for matrix and fracture components. Yet in this case, the degree of uncertainty only increases with the introduction of a new parameter: a cross-flow index of fluid migration from matrix to fracture, which is only determined indirectly by resul... [more]
On the Employment of a Chloride or Fluoride Salt Fuel System in Advanced Molten Salt Reactors, Part 1: Thermophysical Properties and Core Criticality
Omid Noori-kalkhoran, Dzianis Litskevich, Anna Detkina, Lakshay Jain, Gregory Cartland-Glover, Bruno Merk.
February 24, 2023 (v1)
Subject: Materials
Keywords: EVOL, fuel salt, iMAGINE, molten salt fast reactors, neutronic criticality, nuclear reactors, thermophysical properties
Molten salt reactors (MSRs), as one of the six main technologies of Gen IV, can meet the broad area of sustainability, economics, safety and reliability, proliferation resistance and physical protection goals. One of the main and first challenges in designing molten salt fast reactors (MSFRs) is the selection of an appropriate molten salt fuel system based on the envisaged applications and objectives. In this study’s series, a full-scope evaluation has been conducted about employing either chloride or fluoride salt fuels as the main competitors’ candidates for fuel salt in MSFR designs. Two distinguished projects, EVOL (CNRS, Grenoble-France), based on fluoride salt, and iMAGINE (The University of Liverpool, UK), based on chloride salts, were considered in order to achieve this goal as case studies. The first part of this series (part 1—this article) deals with the investigation of the thermophysical properties of the salt fuel system, criticality search and neutron-flux energy spectru... [more]
Unconventional Energy from an Electric Impulse Heater Combined with a Wind Turbine
Volodimir Holovko, Volodimir Kohanevich, Mikola Shikhailov, Artem Donets, Mihailo Maksymeniuk, Olena Sukmaniuk, Savelii Kukharets, Ryszard Konieczny, Adam Koniuszy, Barbara Dybek, Grzegorz Wałowski.
February 24, 2023 (v1)
Keywords: capacitive storage, electric pulse heater, wind energy, wind power plant
The widespread use of wind power plants can provide full or partial energy supply to the consumer, taking into account certain investments and the instability of energy production. Modern wind energy technology involves the conversion of mechanical energy of the wind flow into electrical energy with subsequent conversion, at the request of the consumer, into thermal energy. In addition, the unprocessed use of the low-potential part of the wind flow, characterized by non-uniformity and randomness of its reception for the purpose of supplying heat to the recipient, requires new approaches to solving this problem. Bench experimental studies of this heater confirmed the adequacy of the mathematical model: within an hour, the temperature increase of the heater core changed from 22 °C to 36 °C at a voltage of 66 V and the number of pulses entering the heater coil was (15−17) discharges, which corresponds to the values of the mathematical expectation of the wind speed of (4−5.2) m∙s−1 in the... [more]
Green and Blue Hydrogen Production: An Overview in Colombia
Sebastián Mantilla, Diogo M. F. Santos.
February 24, 2023 (v1)
Keywords: blue hydrogen, Colombia, green hydrogen, Renewable and Sustainable Energy
Colombia, a privileged country in terms of diversity, availability of natural resources, and geographical location, has set a roadmap for hydrogen as part of the energy transition plan proposed in 2021. To reduce its emissions in the mid-term and foster its economy, hydrogen production should be green and blue, with specific targets set for 2030 for the hydrogen costs and produced quantities. This work compares the state-of-the-art production of blue and green hydrogen and how Colombia is doing in each pathway. A deeper analysis considers the advantages of Colombia’s natural resources, the possible paths the government could follow, and the feedstock’s geographical location for hydrogen production and transportation. Then, one discusses what may be the next steps in terms of policies and developments to succeed in implementing the plan. Overall, it is concluded that green hydrogen could be the faster, more sustainable, and more efficient method to implement in Colombia. However, blue h... [more]
Short-Circuit Fault Current Parameter Prediction Method Based on Ultra-Short-Time Data Window
Mengjiao Wang, Xinlao Wei, Zhihang Zhao.
February 24, 2023 (v1)
Keywords: current amplitude, high-frequency interference, trend filtering technology, ultra-short-time data windows, white noise interference
The prediction of short-circuit current parameters is essential for the adoption of short-circuit fault limiting techniques and the reliable cut-off of circuit breakers. In order to quickly and accurately predict the short-circuit current waveform parameters, a short-circuit fault current prediction method based on ultra-short-time data windows (UDWs) is proposed. First, a mathematical model for describing short-circuit faults is constructed and the characteristics of short-circuit currents are analyzed. Then, the principle of the UDW method for predicting short-circuit current waveform parameters is derived, the correctness of the principle is verified by setting-up an ideal signal through simulation, and the exponential and linear expressions fitted to the curve are analyzed and compared with the improved half-wave Fourier method for predicting current parameters. Finally, trend filtering technology is proposed to eliminate high-frequency interference and white noise interference. Th... [more]
Reconfigured Photovoltaic Model to Facilitate Maximum Power Point Tracking for Micro and Nano-Grid Systems
J. Prasanth Ram, Dhanup S. Pillai, Ye-Eun Jang, Young-Jin Kim.
February 24, 2023 (v1)
Keywords: array reconfiguration, global maximum power point (GMPP), hill climbing (HC), micro- and nano-grids, photovoltaic (PV), shade faults
PV systems are a popular energy resource, prevalent worldwide; however, shade faults manifested in PV systems limit its power conversion efficiency. The occurrence of multiple power peaks and their location are highly uncertain in PV systems; this necessitates the use of complex maximum power point tracking algorithms to introduce high voltage oscillations. To address this issue, a new reconfigurable PV array to produce a global maximum power point (GMPP) algorithm close to the Voc regions was introduced. This enables the use of a simple Perturb and Observe (P&O) algorithm to easily track GMPP. For reconfiguration, a simple 5 × 5 PV array is considered, and a new physical relocation procedure based on the position square method is proposed. Performance of the proposed reconfiguration model is tested for four various shade events and its row current evaluations are comprehensively analyzed. Furthermore, evaluations of fill factor, mismatch loss, and power loss are quantitatively compare... [more]
Negative Impact Mitigation on the Power Supply System of a Fans Group with Frequency-Variable Drive
Yerbol Yerbayev, Ivan Artyukhov, Artem Zemtsov, Denis Artyukhov, Svetlana Molot, Dinara Japarova, Viktor Zakharov.
February 24, 2023 (v1)
Subject: Environment
Keywords: frequency variable drive, gas cooling plant, harmonic compensation, power quality, power supply system
The technological installations’ characteristics are possible to improve by equipping fans with a frequency-controlled electric drive. However, it can lead to an electromagnetic compatibility problem in the electrical supply system. This problem becomes worse if a large number of fans are included in the technological installation and the electric drives are powered from a substation connected to a limited power source. As an example, in this article we investigate the power supply system of a gas cooling unit with variable-frequency electric drives for fans. The electric drives’ operating mode dependences characterizing the non-sinusoidal voltages and currents of the power source are obtained with the help of simulation modeling in the MATLAB environment with the Simulink expansion package. The typical substation circuit usage for the power supply of a group of fans with a frequency-controlled drive does not meet the requirements of IEEE Standard 519-2014. We can solve the problem of... [more]
Sustainable Governance, Energy Security, and Energy Losses of Europe in Turbulent Times
Tomasz Wołowiec, Svitlana Kolosok, Tetiana Vasylieva, Artem Artyukhov, Łukasz Skowron, Oleksandr Dluhopolskyi, Larysa Sergiienko.
February 24, 2023 (v1)
Keywords: Energy Efficiency, energy losses, energy security, EU, sustainable governance
The article aims to identify the relationship between energy efficiency and particular indicators of energy losses in Europe. The results of the bibliographic analysis showed a knowledge gap in energy losses in Europe regarding the new challenges of energy security. For the analysis, annual panel data from 32 European countries were collected from 1990 to 2019. The authors used the Jarque−Bera test to assess the normality of the residuals, utilized the Breush−Pagan test for heteroskedasticity check, and applied regression analysis to determine the relationship between energy efficiency and energy loss rates in Europe. To assess the effects of energy losses, the authors performed OLS modeling using the stats model’s package in Python. According to the modeling results, an increase in distribution losses (% of available energy from all sources) by 1% in Europe leads to an increase in energy consumption by 17.16% under other constant conditions. There is significant heterogeneity between... [more]
Suitability of Different Machine Learning Outlier Detection Algorithms to Improve Shale Gas Production Data for Effective Decline Curve Analysis
Taha Yehia, Ali Wahba, Sondos Mostafa, Omar Mahmoud.
February 24, 2023 (v1)
Keywords: Decline Curve Analysis, Machine Learning, outlier detection, production forecast, shale gas
Shale gas reservoirs have huge amounts of reserves. Economically evaluating these reserves is challenging due to complex driving mechanisms, complex drilling and completion configurations, and the complexity of controlling the producing conditions. Decline Curve Analysis (DCA) is historically considered the easiest method for production prediction of unconventional reservoirs as it only requires production history. Besides uncertainties in selecting a suitable DCA model to match the production behavior of the shale gas wells, the production data are usually noisy because of the changing choke size used to control the bottom hole flowing pressure and the multiple shut-ins to remove the associated water. Removing this noise from the data is important for effective DCA prediction. In this study, 12 machine learning outlier detection algorithms were investigated to determine the one most suitable for improving the quality of production data. Five of them were found not suitable, as they re... [more]
Purification of Residual Glycerol from Biodiesel Production as a Value-Added Raw Material for Glycerolysis of Free Fatty Acids in Waste Cooking Oil
K. A. Viraj Miyuranga, Udara S. P. R. Arachchige, Randika A. Jayasinghe, Gamunu Samarakoon.
February 24, 2023 (v1)
Subject: Materials
Keywords: biodiesel, biofuel, free fatty acid, glycerol, glycerolysis, purification, Renewable and Sustainable Energy, Sustainability, value-added, waste cooking oil
The crude glycerol produced as a byproduct of transesterification synthesis has very few applications because it comprises of significant amounts of methanol, catalyst, and soap. On the other hand, transesterifications of highly acidic oil in the presence of an alkaline catalyst are problematic due to the presence of high amounts of free fatty acids. In this study, the free fatty acid level of high acid oil, which was initially determined to be 19.25%, was decreased to permit the direct production of biodiesel via glycerolysis with pure glycerol, making direct transesterification feasible. Through a process of purification, crude glycerol was refined to 92.5% purity. It was revealed that the physiochemical parameters of density, moisture content, ash content, matter organic non-glycerol content, pH, and Na/K concentrations of generated purified glycerol are equal to those of commercially available glycerol. In contrast, glycerolysis treatment successfully decreased the free fatty acid... [more]
Heat Transfer Intensification in a Heat Exchanger by Means of Twisted Tapes in Rib and Sawtooth Forms
Pasu Poonpakdee, Boonsong Samutpraphut, Chinaruk Thianpong, Suriya Chokphoemphun, Smith Eiamsa-ard, Naoki Maruyama, Masafumi Hirota.
February 24, 2023 (v1)
Keywords: aerothermal performance index, friction factor, heat transfer enhancement, swirling flow, twisted tapes in rib and sawtooth form, vortex flow
This experimental study aimed to intensify the aerothermal performance index (API) in a round tube heat exchanger employing twisted tapes in rib and sawtooth forms (TTRSs) as swirl/vortex flow generators. The TTRSs have a constant twist ratio of 3.0, a constant rib pitch ratio (p/e) of 1.0, and six different sawtooth angles (α = 20°, 30°, 40°, 50°, 60°, and 70°). Experiments were carried out in an open flow using air as the working fluid for Reynolds numbers between 6000 and 20,000 in the current study, which was conducted in a heated tube under conditions of uniform wall heat flux. A typical twisted tape (TT) was also tested for comparison. The experimental results suggest that TTRSs yield Nusselt numbers ranging from 1.42 to 2.10 times of those of a plain tube. TTRSs with larger sawtooth angles (α) offer superior heat transfer. The TTRSs with α = 20°, 30°, 40°, 50°, 60°, and 70° respectively, enhance average Nusselt numbers by 158%, 162%, 166%, 172%, 180%, and 187% with average frict... [more]
Energy Intake Models for Intermittent Operation of Dead-End Microfiltration Filling Line
Jure Ravnik, Gorazd Bombek, Aleš Hribernik, Timi Gomboc, Matej Zadravec, Aleks Kapun, Grega Hrovat, Jure Gradišek, Matjaž Hriberšek.
February 24, 2023 (v1)
Keywords: filter clogging, membrane energy intake, membrane filtration, water hammer effect
In filling lines equipped with membrane separation devices in the form of filters energy, consumption is only one of the important working parameters, the other being sustainable filter performance in terms of separation efficiency. As the filling line is typically equipped with a valve, intermittent operation of the filter is an important form of its use. Whereas the overall energy consumption of the filtration process is governed by the continuous operation mode, the intermittent mode, characterised by opening/closing of the valve, contributes most to problems of filter failure, i.e., the breakthrough of filtered particles through the membrane. A model for determination of the energy intake of a microfiltration membrane during the opening and closing of a valve is presented in this work. The model is based on computational analysis of the pressure wave signals recorded during the opening/closing of the valve using Fourier transform, and expressed in a nondimensional filter area speci... [more]
Interdependence between Energy Cost and Financial Situation of the EU Agricultural Farms—Towards the Implementation of the Bioeconomy
Roma Ryś-Jurek.
February 24, 2023 (v1)
Keywords: bioeconomy, cost of energy, development, European Union, family farm, financial situation
The concept of a bioeconomy can be an opportunity for agricultural and rural development. The objective of this research is to identify groups of family farms which are able to implement the principles of this new development model based on a bioeconomy and to reduce operating costs, especially energy. The time scope of this study covers the period 2004−2020. The data source is the Farm Accountancy Data Network. On the basis of the values of output, family farm income, cash flow, net investment and total inputs (including energy costs), the classes of family farms are indicated. The ranking is based on geographical criteria and the results of panel data models with fixed effects which measure the relationship between energy costs and production, income, cash flow and net investment according to the economic size of the family farm. The results obtained are discussed within the framework of recommendations of the European Commission.
Simulation Study of the Swirl Spray Atomization of a Bipropellant Thruster under Low Temperature Conditions
Haifu Li, Jihong Feng, Xinyue Cao, Zhen Zhang, Hongbo Liang, Yusong Yu.
February 24, 2023 (v1)
Keywords: atomization characteristics, LES, low temperature, MMH, thrusters, VOF
The spray atomization of an injector significantly influences the performance and working life span of a bipropellant thruster of a spacecraft. Deep space exploration requires the thruster to be able to operate reliably at a low temperature range from −40 °C to 0 °C, so the effect of low temperature conditions on the atomization characteristics of injector spray is motivated to be comprehensively investigated. To study the swirl atomization characteristics of MMH (methylhydrazine), which is more difficult to atomize than NTO (nitrogen tetroxide), numerical simulations were conducted, employing the methods of VOF (volume of fluid) and LES (large eddy simulation) under low temperature conditions. The physical model with a nozzle size of 0.5 mm and boundary conditions with a velocity inlet of 3.89 m/s both follow the actual operation of thrusters. The development of spray atomization at low temperatures was observed through parametric comparisons, such as spray velocity, liquid total surf... [more]
Major Challenges towards Energy Management and Power Sharing in a Hybrid AC/DC Microgrid: A Review
Sohail Sarwar, Desen Kirli, Michael M. C. Merlin, Aristides E. Kiprakis.
February 24, 2023 (v1)
Keywords: energy management, hybrid AC/DC microgrid, interlinking converter control, power sharing
A fundamental strategy for utilizing green energy from renewable sources to tackle global warming is the microgrid (MG). Due to the predominance of AC microgrids in the existing power system and the substantial increase in DC power generation and DC load demand, the development of AC/DC hybrid microgrids (HMG) is inevitable. Despite increased theoretical efficiency and minimized AC/DC/AC conversion losses, uncertain loading, grid outages, and intermittent complexion of renewables have increased the complexity, which poses a significant threat toward system stability in an HMG. As a result, the amount of research on the stability, management, and control of HMG is growing exponentially, which makes it imperative to recognize existing problems and emerging trends. In this survey, several strategies from the most recent literature developed to address the challenges of HMG are reviewed. Power flow analysis, power sharing (energy management), local and global control of DGs, and a brief ex... [more]
The Expectations towards Cars to Be Used in Car-Sharing Services—The Perspective of the Current Polish Non-Users
Katarzyna Turoń.
February 24, 2023 (v1)
Keywords: car-sharing, e-car-sharing, electric car-sharing, fleet management, shared mobility, sustainable transport systems, transportation engineering
In the era of upcoming European Union regulations limiting the registration of combustion cars from 2035, the development of various types of alternatives to balancing transport is on the agenda of modern cities. One of these types of services includes automated short-term car rental systems, i.e., car-sharing systems. In recent years, car-sharing services have been gaining more and more interest among operators and municipal authorities. Despite their intense activities, there are still people in society who have not used car-sharing services so far. A lot of research has been devoted to an attempt to answer their needs in the field of car-sharing, but there is a research gap in the field of detailed analyses of the fleet of cars that they would like to use. Noticing this niche, this article is dedicated to the topic of selecting vehicles for car-sharing systems from the point of view of current non-users and indicating the features that, in their opinion, are the most important param... [more]
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