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Records with Keyword: Energy Storage
Showing records 219 to 243 of 318. [First] Page: 1 6 7 8 9 10 11 12 13 Last
Applicability of Hydropower Generation and Pumped Hydro Energy Storage in the Middle East and North Africa
Shaima A. Alnaqbi, Shamma Alasad, Haya Aljaghoub, Abdul Hai Alami, Mohammad Ali Abdelkareem, Abdul Ghani Olabi
March 1, 2023 (v1)
Keywords: Energy Storage, EnergyPLAN, MENA region, pumped hydro storage, Renewable and Sustainable Energy
Energy storage for medium- to large-scale applications is an important aspect of balancing demand and supply cycles. Hydropower generation coupled with pumped hydro storage is an old but effective supply/demand buffer that is a function of the availability of a freshwater resource and the ability to construct an elevated water reservoir. This work reviews the technological feasibility of hydropower generation and also pumped hydro storage and its geographical distribution around the world. There is also an emphasis on installations in the Middle East and North Africa (MENA) in terms of available capacity as well as past and future developments and expansions. A discussion is presented on a project taking place in the United Arab Emirates (UAE) in the Hatta region, which has a water reservoir that would be fit for utilization for pumped hydro storage applications. Once the project is commissioned in 2024, it will provide an estimated 2.06 TWh per year, helping the UAE achieve the goal o... [more]
Home Energy Management Considering Renewable Resources, Energy Storage, and an Electric Vehicle as a Backup
Oussama Ouramdane, Elhoussin Elbouchikhi, Yassine Amirat, Franck Le Gall, Ehsan Sedgh Gooya
March 1, 2023 (v1)
Keywords: distributed energy generation, energy dispatching, energy management systems, Energy Storage, microgrids, optimal sizing, Optimization, vehicle-to-grid, vehicle-to-home
The vehicle-to-grid concept emerged very quickly after the integration of renewable energy resources because of their intermittency and to support the grid during on-peak periods, consequently preventing congestion and any subsequent grid instability. Renewable energies offer a large source of clean energy, but they are not controllable, as they depend on weather conditions. This problem is solved by adding energy storage elements, implementing a demand response through shiftable loads, and the vehicle-to-grid/vehicle-to-home technologies. Indeed, an electric vehicle is equipped with a high-capacity battery, which can be used to store a certain amount of energy and give it back again later when required to fulfill the electricity demand and prevent an energy shortage when the main-grid power is limited for security reasons. In this context, this paper presents a comparative study between two home microgrids, in one of which the concept of vehicle-to-home is integrated to provide a case... [more]
Battery Storage at the Secondary Distribution Electricity Grid by Investigating End-Users Load Demand Measurements
Andreas Theocharis, Sahaphol Hamanee
March 1, 2023 (v1)
Keywords: Batteries, energy consumption, Energy Storage, microgrids, power distribution
Energy storage systems is expected to be utilized to cover the increased electrification of energy demands and to alleviate the electrical energy production from intermittent energy sources such as solar and wind. Aggregated and distributed battery energy storage systems may improve electricity grids operability and security by providing smart energy management options and efficient resources allocation. In this paper, battery storage at the secondary distribution level is explored. The investigation is based on the end-user energy demand behavior. As such, the electrical energy consumption patterns are measured and analyzed in a residential area. Measurements were collected and analyzed in order to record the customers’ behaviors aiming to reveal their differences and similarities. Following this, aggregated and distributed battery energy storage systems are computed based on the features of the measured electrical power consumption patterns aiming to estimate the factors that could p... [more]
Indonesia’s Vast Off-River Pumped Hydro Energy Storage Potential
David Firnando Silalahi, Andrew Blakers, Bin Lu, Cheng Cheng
March 1, 2023 (v1)
Subject: Environment
Keywords: Energy Storage, green-field, low cost, off-river pumped hydro, potential, solar PV
Indonesia has vast solar energy potential, far more than needed to meet all its energy requirements without the use of fossil fuels. This remains true after per capita energy consumption rises to match developed countries, and most energy functions are electrified to minimize the use of fossil fuels. Because Indonesia has relatively small energy potential from hydro, wind, biomass, geothermal and ocean energy, it will rely mostly on solar for its sustainable energy needs. Thus, Indonesia will require large amounts of storage for overnight and longer periods. Pumped hydro comprises 99% of global energy storage for the electricity industry. In this paper, we demonstrate that Indonesia has vast practical potential for low-cost off-river pumped hydro energy storage with low environmental and social impact; far more than it needs to balance a solar-dominated energy system.
Layer-by-Layer Materials for the Fabrication of Devices with Electrochemical Applications
Eduardo Guzmán, Francisco Ortega, Ramón G. Rubio
March 1, 2023 (v1)
Subject: Materials
Keywords: capacitors, electrochemistry, electrodes, Energy Storage, Layer-by-Layer, miniaturization, thin film
The construction of nanostructured materials for their application in electrochemical processes, e.g., energy storage and conversion, or sensing, has undergone a spectacular development over the last decades as a consequence of their unique properties in comparison to those of their bulk counterparts, e.g., large surface area and facilitated charge/mass transport pathways. This has driven strong research on the optimization of nanostructured materials for the fabrication of electrochemical devices, which demands techniques allowing the assembly of hybrid materials with well-controlled structures and properties. The Layer-by-Layer (LbL) method is well suited for fulfilling the requirements associated with the fabrication of devices for electrochemical applications, enabling the fabrication of nanomaterials with tunable properties that can be exploited as candidates for their application in fuel cells, batteries, electrochromic devices, solar cells, and sensors. This review provides an u... [more]
A Flexible-Reliable Operation Model of Storage and Distributed Generation in a Biogas Power Plant
Renata Rodrigues Lautert, Wagner da Silva Brignol, Luciane Neves Canha, Olatunji Matthew Adeyanju, Vinícius Jacques Garcia
March 1, 2023 (v1)
Subject: Optimization
Keywords: biogas, distributed generation, Energy Storage, Optimization, transactive energy
This paper presents a novel methodology for planning and operating biogas energy systems based on the transactive energy concept to determine multilevel operating regimes for distributed generation. The developed model is used to manage the production, storage, and dispatch of biogas energy systems to meet the load demands of the biogas producer and support the operation of the distribution network operator. An Integer Linear Programming (ILP) is fitted to optimize the biogas production of the biogas producer, including the operation of the biogas storage systems and their interaction with the network operator. The model’s objective is to maximize benefits for the participating agents in a transactive energy context. The model’s effectiveness is validated using seven case studies involving biogas systems having different operating ranges and modes to achieve enhanced flexibility and reliability for the system operation with a large proportion of intermittent energy resources. The simul... [more]
Joint Optimization of Energy Storage Sharing and Demand Response in Microgrid Considering Multiple Uncertainties
Di Liu, Junwei Cao, Mingshuang Liu
March 1, 2023 (v1)
Subject: Optimization
Keywords: deep reinforcement learning, demand response, Energy Storage, Monte Carlo sampling, multiple uncertainties
Energy storage (ES) is playing an increasingly important role in reducing the spatial and temporal power imbalance of supply and demand caused by the uncertainty and periodicity of renewable energy in the microgrid. The utilization efficiency of distributed ES belonging to different entities can be improved through sharing, and considerable flexibility resources can be provided to the microgrid through the coordination of ES sharing and demand response, but its reliability is affected by multiple uncertainties from different sources. In this study, a two-stage ES sharing mechanism is proposed, in which the idle ES capacity is aggregated on the previous day to provide reliable resources for real-time optimization. Then, a two-layer semi-coupled optimization strategy based on a deep deterministic policy gradient is proposed to solve the asynchronous decision problems of day-ahead sharing and intra-day optimization. To deal with the impact of multiple uncertainties, Monte Carlo sampling i... [more]
Dynamic Simulation and Performance Enhancement Analysis of a Renewable Driven Trigeneration System
Renos Rotas, Petros Iliadis, Nikos Nikolopoulos, Ananias Tomboulides, Elias Kosmatopoulos
February 28, 2023 (v1)
Keywords: combined cooling heating power, Dymola, dynamic simulation, Energy Storage, lithium-ion battery, Modelica, Renewable and Sustainable Energy
Research activity in the field of combined cooling heating power (or trigeneration) systems with high renewable energy source (RES) contributions has increased rapidly over the last few years, in line with the European Union legislation about energy communities. However, technical challenges arise regarding the synergetic, sustainable and optimal integration of RES in local energy systems. In the present study, the operation of a trigeneration system located in the student residences of Democritus University of Thrace in Greece is examined. The system involves a combination of highly promising renewable and storage technologies, including solar thermal energy and biomass for heat generation, hot water tanks for thermal energy storage, absorption refrigeration for cooling, along with Organic Rankine Cycle and photovoltaic systems for electricity generation. System modeling and simulation have been implemented in Dymola environment with the use of Modelica equation-based modeling languag... [more]
Role of On-Site Generation in Carbon Emissions and Utility Bill Savings under Different Electric Grid Scenarios
Praveen Cheekatamarla
February 28, 2023 (v1)
Subject: Environment
Keywords: buildings, carbon footprint, electrical efficiency, Energy Storage, heat pumps, hybrid power generation
Energy-efficient and sustainable technologies are necessary to lower energy and carbon footprints. Many technologies are being pursued to meet the increasing energy demand in buildings. An attractive option is efficient utilization of available energy resources, including renewables, to support current and future building energy needs while targeting grid resiliency, energy, and environmental security at an affordable cost via on-site cogeneration-based approaches. This must include energy-efficient technologies with lower greenhouse gas emissions and optimized cost, performance, and reliability. This paper presents the economic and environmental benefits associated with power technologies such as thermionics and solid oxide fuel cells. Hybrid configurations consisting of heat pumps, power systems, and renewable photovoltaics in cogeneration and trigeneration modes of operation are presented. The role of such technologies in lowering CO2 emissions while improving energy resiliency and... [more]
Simulation of the Thermal Runaway Onset in Li-Ion Cells—Influence of Cathode Materials and Operating Conditions
Martina Cianciullo, Giorgio Vilardi, Barbara Mazzarotta, Roberto Bubbico
February 28, 2023 (v1)
Subject: Materials
Keywords: battery safety, Energy Storage, Li-ion batteries, thermal runaway
Li-ion batteries are already being used in several applications, from portable devices to the automotive industry, and they represent a promising option also for other critical uses, such as in the storage of energy from renewable sources. However, two of the main concerns that still hinder their massive introduction in these further areas, are their safety and reliability. Depending on cell characteristics and operating conditions, the heat generated within the cell can exceed that dissipated from its surface, and the cell will fail, possibly with catastrophic consequences. To identify the hazardous working conditions of a cell, a simulation model including the main exothermic reactions was set up to investigate the onset of thermal runaway in several Li-ion cell configurations under various operating conditions. The behavior of four different cathodes under thermal abuse and the influence of external factors such as the environmental temperature and the cooling system efficiency were... [more]
Grid-Connected Power Converters: An Overview of Control Strategies for Renewable Energy
Angelo Lunardi, Luís F. Normandia Lourenço, Enkhtsetseg Munkhchuluun, Lasantha Meegahapola, Alfeu J. Sguarezi Filho
February 28, 2023 (v1)
Keywords: control, electric vehicles, Energy Storage, MPC, power system stability, Renewable and Sustainable Energy, solar photovoltaic energy, voltage source converters, wind turbines
The move towards a greener energy mix to fight climate change propels investments in converter-interfaced resources such as wind and photovoltaics, energy storage systems and electric vehicles. The ongoing evolution of the power system is occurring at a very fast pace, challenging transmission and distribution system operators to seek solutions that are not only adequate for this moment but also for future scenarios. Ongoing research in the fields of power electronics, power systems and control aims at developing control strategies that will help the energy transition to occur, while keeping a stable, secure and reliable power system. The objective of this paper is to present a critical review of the control strategies developed for grid-connected power converters found in renewable energy systems, energy storage systems and electric vehicles. The impact of grid-connected converters on the stability of power grids is also reviewed, highlighting the promising control strategies for enha... [more]
Recent Advancements in Chalcogenides for Electrochemical Energy Storage Applications
Kwadwo Mensah-Darkwa, Daniel Nframah Ampong, Emmanuel Agyekum, Felipe M. de Souza, Ram K. Gupta
February 28, 2023 (v1)
Keywords: Batteries, chalcogenides, electrochemical, Energy Storage, supercapacitors
Energy storage has become increasingly important as a study area in recent decades. A growing number of academics are focusing their attention on developing and researching innovative materials for use in energy storage systems to promote sustainable development goals. This is due to the finite supply of traditional energy sources, such as oil, coal, and natural gas, and escalating regional tensions. Because of these issues, sustainable renewable energy sources have been touted as an alternative to nonrenewable fuels. Deployment of renewable energy sources requires efficient and reliable energy storage devices due to their intermittent nature. High-performance electrochemical energy storage technologies with high power and energy densities are heralded to be the next-generation storage devices. Transition metal chalcogenides (TMCs) have sparked interest among electrode materials because of their intriguing electrochemical properties. Researchers have revealed a variety of modifications... [more]
New Integrated Energy Solution Idealization: Hybrid for Renewable Energy Network (Hy4REN)
Helena M. Ramos, Brandon Vargas, João Roquette Saldanha
February 28, 2023 (v1)
Keywords: Energy Storage, energy transition, hybrid energy solution, renewable energy systems, renewables integration
A review of different energy components is detailed, as a baseline of fundamentals for the new integrated energy concept idealization. This innovative solution is a Hybrid for Renewable Energy Network (Hy4REN) based on well-studied elements to produce the best final solution. This proposal has the objective of improving energy system sustainability, facing fossil fuel and climate change restrictions, and increasing energy network flexibility. The most mature energy storage technology, pumped hydropower energy storage (PHES), is used to support both the grid connection and stand-alone modes, as an integrated hybrid energy system. The hybrid system idealization is modular and scalable, with a complementary nature among several renewables, using sea water in offshore mode to build an integrated solution. By evaluating a variety of energy sources, complemented with economic analysis, the benefits associated are evidenced using this sustainable methodology based only on renewable sources. C... [more]
Sedimentary Basin Water and Energy Storage: A Low Environmental Impact Option for the Bananal Basin
Julian David Hunt, Andreas Nascimento, Oldrich Joel Romero Guzman, Gilton Carlos de Andrade Furtado, Carla Schwengber ten Caten, Fernanda Munari Caputo Tomé, Walter Leal Filho, Bojan Đurin, Maurício Lopes, Yoshihide Wada
February 28, 2023 (v1)
Subject: Environment
Keywords: Energy Storage, hydropower, renewable energies, sedimentary basin, Water, water management
Groundwater storage is an important water management solution that is overlooked by several countries worldwide. This paper evaluates the potential for storing water in the Bananal sedimentary basin and proposes the construction of canals to reduce sediment obstructions in the river flow and harmful flood events. This would allow for better control of the water level. The water stored in the sedimentary basin can be used as a climate change adaptation measure to ensure that the level of the flood plain is maintained high during a drought or low during an intense flood event. Additionally, the flood plain will function as a water reservoir, regulate the river flow downstream from the flood plain, and enhance hydropower generation. A significantly smaller reservoir area is expected to store water, as the water will be stored as groundwater in the sedimentary basin. Results show that the Bananal basin has the potential to store up to 49 km3 of water, which can add up to 11.7 TWh of energy... [more]
Collaborative Optimized Operation Model of Multi-Character Distribution Network Considering Multiple Uncertain Factors and Demand Response
Zifa Liu, Jieyu Li, Yunyang Liu, Puyang Yu, Junteng Shao
February 28, 2023 (v1)
Keywords: collaborative operation, distribution network reconfiguration, electric vehicle, Energy Storage, multi-character system, renewable energy source
As many new devices and factors, such as renewable energy sources, energy storage (ESs), electric vehicles (EVs), and demand response (DR), flood into the distribution network, the characteristics of the distribution network are becoming complicated and diversified. In this study, a two-layer collaborative optimized operation model for the multi-character distribution network considering multiple uncertain factors is proposed to achieve optimal dispatching of ES and EV and obtain the optimal grid structure of the distribution network. Based on basic device models of distribution network, the upper layer distribution network reconfiguration (DNR) model is established and solved by the particle swarm optimization (PSO) based on the Pareto optimality and the Prim algorithm. Then, the lower layer optimal dispatching model of ES and EV is established and solved by the binary PSO. The upper layer model and the lower layer model are integrated to form the collaborative optimized operation mod... [more]
Modified Master−Slave Controller for Stable Power Supply of Energy Storage Based Microgrid
Byoung-chang Jeong
February 28, 2023 (v1)
Keywords: Energy Storage, island operation, microgrid, power sharing, stable frequency
This paper presents a method for supplying stable electricity using renewable energy sources and energy storage systems (ESSs) in a small-scale microgrid (MG) such as an island. Traditional control methods, such as master−slave control and droop control, have focused on equalizing power sharing among a small number of generators and do not deal well with emergencies such as unplanned generator failures. This paper proposes a control method that can stably maintain the frequency of the MG in various situations by combining the advantages of master−slave control and droop control and complementing the disadvantages. Simulations were performed under various conditions to verify the proposed control method.
Efficiency versus System Synergism: An Advanced Life Cycle Assessment for a Novel Decarbonized Grid System Innovation
Shukai Liu, Liang Dong, Ling Han, Jiajia Huan, Baihao Qiao
February 28, 2023 (v1)
Subject: Environment
Keywords: decarbonized grid system, Energy Storage, LCA, microgrid, new power system
The power sector plays a significant role in carbon neutrality strategies, and the grid system is a crucial part of the power sector. In particular, with less mitigation potential from technology efficiency, the credit from whole life cycles is critical. This paper describes the investigation of the environmental impacts of various scenarios from the perspective of life cycles. By using the life cycle assessment (LCA) method, various grid systems are examined as a case study, including a traditional, renewable energy, and power storage grid system, as well as a microgrid, in Guangdong. The results highlight the fact that with the systematic improvement of a grid, significant environmental benefits can be achieved. For a grid system, optimization through technology has significant carbon reduction effects even if the power grid structure is not changed. Using renewable energy instead of traditional fuel can reduce the emission of 0.05 kg of CO2-equivalent greenhouse gas per 1 kWh of ele... [more]
Mesoporous VCN Nanobelts for High-Performance Flexible Zn-Ion Batteries
Zeyan Zhou, Taotao Zeng, Haoran Zhang, Ding Chen
February 28, 2023 (v1)
Keywords: Energy Storage, flexible, VCN, Zn-ion batteries
Vanadium nitride (VN) with a wide working window has been identified as a promising electrode material candidate for batteries due to the high specific capacitance and the excellent electrical conductivity. Here, we have successfully prepared VCN nanobelts, which display mesoporous structure with high specific surface area (54.4 m2 g−1) and the total pore volume was 0.266 cm3 g−1. Furthermore, the prepared flexible Zn-ion battery (FZIB) with VCN-5 not only exhibited high specific capacitance (81 μAh cm−2), excellent rate capability, and long cyclic durability (77% after 1000 cycles at 0.6 mA cm−2) but also had the characteristics of flexibility. This FZIB is important to reduce the difficulty in thermal management and can be used in a series of applications, including wearable electric devices.
A Comparative Review of Lead-Acid, Lithium-Ion and Ultra-Capacitor Technologies and Their Degradation Mechanisms
Ashleigh Townsend, Rupert Gouws
February 28, 2023 (v1)
Keywords: battery degradation, capacity decay/attenuation, charge/discharge cycles, Energy Storage, lead acid battery, lithium-ion battery, renewable energy sources, stratification, sulfation, ultra-capacitor
As renewable energy sources, such as solar systems, are becoming more popular, the focus is moving into more effective utilization of these energy sources and harvesting more energy for intermittency reduction in this renewable source. This is opening up a market for methods of energy storage and increasing interest in batteries, as they are, as it stands, the foremost energy storage device available to suit a wide range of requirements. This interest has brought to light the downfalls of batteries and resultantly made room for the investigation of ultra-capacitors as a solution to these downfalls. One of these downfalls is related to the decrease in capacity, and temperamentality thereof, of a battery when not used precisely as stated by the supplier. The usable capacity is reliant on the complete discharge/charge cycles the battery can undergo before a 20% degradation in its specified capacity is observed. This article aims to investigate what causes this degradation, what aggravates... [more]
Experimental Investigation on Latent Thermal Energy Storages (LTESs) Based on Pure and Copper-Foam-Loaded PCMs
Morena Falcone, Danish Rehman, Matteo Dongellini, Claudia Naldi, Beatrice Pulvirenti, Gian Luca Morini
February 28, 2023 (v1)
Subject: Materials
Keywords: Energy Storage, heat conductivity, LTESS, melting cycle, metal foam, phase change material, thermal homogeneity
In this work, a commercial paraffin PCM (RT35) characterized by a change range of the solid-liquid phase transition temperature Ts−l=29−36 °C and the low thermal conductivity λSL=0.2 W/m K is experimentally tested by submitting it to thermal charging/discharging cycles. The paraffin is contained in a case with a rectangular base and heated from the top due to electrical resistance. The aim of this research is to show the benefits that a 95% porous copper metal foam (pore density PD=20PPI) can bring to a PCM-based thermal storage system by simply loading it, due to the consequent increase in the effective thermal conductivity of the medium (λLOAD=7.03 W/m K). The experimental results highlight the positive effects of the copper foam presence, such as the heat conduction improvement throughout the system, and a significant reduction in time for the complete melting of the PCM. In addition, the experimental data highlight that in the copper-foam-loaded PCM the maximum temperature reached... [more]
Carbon-Free Electricity Generation in Spain with PV−Storage Hybrid Systems
Jesús Fraile Ardanuy, Roberto Alvaro-Hermana, Sandra Castano-Solis, Julia Merino
February 28, 2023 (v1)
Keywords: battery storage plants, carbon emission-free, Energy Storage, generation mix, lithium-ion battery, power systems, pumped storage generation, Renewable and Sustainable Energy, solar power generation
Climate change motivated by human activities constitutes one of the main challenges of this century. To cut carbon emissions in order to mitigate carbon’s dangerous effects, the current energy generation mix should be shifted to renewable sources. The main drawback of these technologies is their intermittency, which will require energy storage systems to be fully integrated into the generation mix, allowing them to be more controllable. In recent years, great progress to develop an effective and economically feasible energy storage systems, particularly motivated by the recent rise of demand for electric transportation, has been made. Lithium-ion (Li-ion) battery prices have fallen near 90% over the past decade, making possible the affordability of electric vehicles and transforming the economics of renewable energy. In this work, a study on storage capacity demand previously presented as conference paper is expanded, including a deep analysis of the Spanish generation mix, the evaluat... [more]
Advanced Prototype of an Electrical Control Unit for an MR Damper Powered by Energy Harvested from Vibrations
Arkadiusz Kozieł, Łukasz Jastrzębski, Bogdan Sapiński
February 28, 2023 (v1)
Keywords: driver unit, electrical control unit, electromagnetic harvester, Energy Storage, MR damper, vibration reduction system
The work deals with a newly developed prototype of an electrical control unit (ECU) for a magnetorheological (MR) damper powered by energy harvested from vibrations. The ECU, consisting of a rectifying bridge, a driver unit, a microcontroller, and an internal power supply system, is an advanced version of the specially designed processing system for energy harvested from vibrations and the use of this energy to control the MR damper. Unlike a typical MR damper control system in which electrical circuits are powered from an external energy source, the ECU is powered by a part of the energy extracted from a vibrating system using an electromagnetic harvester. However, the excess amount of energy recovered over that necessary to power the MR damper and electrical circuits can be collected in harvested energy storage. The study presents the design concept of the ECU, computer simulations of the in-built driver unit (DU), the method of connecting the ECU with the harvester, the MR damper an... [more]
Modeling, Optimization, and Analysis of a Virtual Power Plant Demand Response Mechanism for the Internal Electricity Market Considering the Uncertainty of Renewable Energy Sources
Zahid Ullah, Arshad, Hany Hassanin
February 28, 2023 (v1)
Keywords: demand response, electricity market, Energy Storage, locational marginal prices, Modelling, Optimization, renewable energy sources, uncertainty modeling
The penetration of renewable energy sources (RESs) in the electrical power system has increased significantly over the past years due to increasing global concern about climate change. However, integrating RESs into the power market is highly problematic. The output of RESs such as wind turbines (WTs) and photovoltaics (PVs) is highly uncertain. Their correlation with load demand is not always guaranteed, which compromises system reliability. Distributed energy resources (DERs), especially demand response (DR) programs and energy storage systems (ESSs), are possible options to overcome these operational challenges under the virtual power plant (VPP) setting. This study investigates the impact of using a DR program and battery energy storage system (BESS) on the VPP’s internal electricity market, and also cost-minimization analysis from a utility viewpoint. Three different constrained optimal power flow (OPF) problems are solved such as base case, DR case, and BESS case to determine tot... [more]
Neural Network-Based Demand-Side Management in a Stand-Alone Solar PV-Battery Microgrid Using Load-Shifting and Peak-Clipping
Godiana Hagile Philipo, Josephine Nakato Kakande, Stefan Krauter
February 28, 2023 (v1)
Keywords: demand response, demand-side management, Energy Storage, load shifting, microgrid, neural network, smart grid
Due to failures or even the absence of an electricity grid, microgrid systems are becoming popular solutions for electrifying African rural communities. However, they are heavily stressed and complex to control due to their intermittency and demand growth. Demand side management (DSM) serves as an option to increase the level of flexibility on the demand side by scheduling users’ consumption patterns profiles in response to supply. This paper proposes a demand-side management strategy based on load shifting and peak clipping. The proposed approach was modelled in a MATLAB/Simulink R2021a environment and was optimized using the artificial neural network (ANN) algorithm. Simulations were carried out to test the model’s efficacy in a stand-alone PV-battery microgrid in East Africa. The proposed algorithm reduces the peak demand, smoothing the load profile to the desired level, and improves the system’s peak to average ratio (PAR). The presence of deferrable loads has been considered to br... [more]
Integration of Photovoltaic-Based Transformerless High Step-Up Dual-Output−Dual-Input Converter with Low Power Losses for Energy Storage Applications
Belqasem Aljafari, Senthil Kumar Ramu, Gunapriya Devarajan, Indragandhi Vairavasundaram
February 27, 2023 (v1)
Keywords: DC–DC converter, Energy Storage, multi-input multi-output, step-up converter
The synchronous integration of numerous input and output loads is possible with multi-input (MI) and multi-output (MO) DC−DC converters. In this paper, the non-isolated DC−DC converter described, which has a high step-up capability and multiple ports for outputs and inputs for energy storage system (ESS) applications. The voltage level of the converter is changeable. The capacity to provide the large voltage increases with a low duty cycle portion, the ease with which each duty cycle can be controlled, and minimal power losses are all advantages of the proposed design. The proposed system offers advantages for applications requiring energy storage. In the continuous conduction mode (CCM), the operation principles, steady-state evaluation, and extracting of the voltage and current coefficients are performed. The supply sources can be inserted or withdrawn without causing a cross-regulation issue in the proposed converter. Ultimately, the functionality of the proposed structure is examin... [more]
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