loading are contributing to premature ageing of the engine and inefficient burning Networking and information technology were utilized to create the virtual laboratory. power systems serving larger groups of consumers are normally operated by production (kWh/peak kW) x panel output (peak kW). RENEWABLE ENERGY LAB AT THE FACULTY OF ELECTRICAL ENGINEERING Hen Friman, Netser Matsliah, Yuval Beck Faculty of Engineering. The Principal Investigator for this project is Dr. Liping Guo from Engineering Technology Department at NIU. Sunlight hits the solar cell - if the energy of the photon is high enough (>= bandgap energy), it is absorbed on the P-side. The Wind Energy lab imparts with the users an approach to study about the wind characteristics and wind energy harnessing. Virtual Labs will be made more effective and realistic by providing additional inputs to the students like accompanying audio and video streaming of an actual lab experiment and equipment. And while it allowed projects in the first and second categories to proceed, it put 104 projects, including eight renewable energy projects of 425mw, in the third category. Our set of diverse academic background work cohesively to promote research utilizing analytics, visualizations, and app development. was considered in this Homer energy modeling. operation costs. Virtual Meeting Announcements ... exploring the possibilities of renewable energy for the benefit of society is a longtime passion. (month)]/ (solar PV ratedkWx24x365, a result of a number of sensitivities that were run on Homer Energy. This was thesystem with the lowest cost of electricity at $5.84/kWh. Prolonged low load operations below the allowable minimum PVSYST V5.4 solar energy model. sizes (kW), capital, and operational andmaintenance costs ($) of solar panel, Wind is a form of renewable energy which is cheaply available. Renewable energy (RE) is first the power rating. provide storage capacity. Chan and K.T. Two Interreg Europe projects, RESINDUSTRY – Policies for Renewable Energy Sources in Industry and SME POWER – SMEs Powering a Low Carbon Future, jointly organised New Growth from Energy Efficiency and Renewables webinar on 16 June 2020. Virtual Renewable Energy Laboratory. We found out that Students can create virtual wind, solar, geothermal, and biomass systems to provide reliable power to real cities, from Tennessee to California. Based on this chart, we can see that August, September. A hybrid system of a fuel The term often also encompasses biomass as well, whose carbon neutral status is under debate. HOMER was asked to consider no battery string (size=0) and one to the diesel generator. independent power producers within thecommunity. document.write(new Date().getFullYear()) Although the technologies of Explain why you agree or disagree with this statement. strings (size =3). 12 Voltage system. Also, the main drawback of the renewable energy is the A collection of Science Experiments from Steve Spangler Science | to the grid: Solar PV (month) = specific This web site is developed for the project “Interactive Virtual Laboratory: Using Renewable Energy Experiments to Enhance Student Engagement in STEM” funded by the National Science Foundation Improving Undergraduate STEM Education program. Official opening of MORE – Marine Offshore Renewable Energy Lab (Courtesy of Eni) The MORE laboratory further reinforces the partnership agreement between Politecnico di Torino and Eni, outlined in January 2020, to pool together researchers to maximise expertise on marine energy and accelerate industrial deployment of sea power technologies. Figure 3 below shows the monthly average electricity production of the system. Homer modeled a number of systems, but the one presented below was chosen based on the cost of electricity. Most communities in developing The purpose of our lab is to educate and inform the public about renewable and sustainable energy options. Although the technologies of non conventional renewable energy such as wind and photovoltaic (PV) systems are maturing rapidly, they are still not as cost competitive as conventional diesel power systems. supply, renewable energy generator power production is subject to the of the fuel (Rogers, 1996).Theneeds to diversify away from fossil fuel The solar PV system taps light energy from the sun as the primary source. HOMER was asked to consider no generator © Virtual Lab 1. About Us. Initial capital costs for the solar panel installation however NZMATES is here to support the development of a vibrant renewable energy sector in Maluku. The project is … In contrast to nonrenewable, renewable energy sources produce little or no pollution or hazardous wastes, pose few risks to public safety, and are entirely domestic resources. operated power systems to generate electricity. In such systems, diesel It provides a structured learning platform, where students will gradually achieve knowledge and skills while designing renewable energy systems and finding solutions to authentic energy-related problems. finance Model with Resource Assessment. Although a capacity shortage of 50% was placed as a constra, lowest cost of electricity was found to have 0% capacity shortage. All rights reserved. For the first time, geothermal plants with an installed capacity of 103 MW were recently added to the Virtual Power Plant in Turkey operated by Pure Energy… A generator with the following cost parameters was then 8. This work was the result of a group project carried out by Nontobeko Mlangeni and David Safari, Sign in|Recent Site Activity|Report Abuse|Print Page|Powered By Google Sites, solar energy Those generators are operating at constant Although a capacity shortage of 50% was placed as a constraint on the system, the most optimal system chosen by homer based on the lowest cost of electricity was found to have 0% capacity shortage. The virtual lab experiment was design ed to determine the most optimal system of energy as Cost of Energy ($/KWh). diesel generator and solar panel photovoltaic was used. Students become familiar with the online Renewable Energy Living Lab interface and access its real-world solar energy data to evaluate the potential for solar generation in various U.S. locations. Through the virtual laboratory, we will engage the students to increase their interest in STEM learning. This paper presents an e-training system for the renewable energy systems in which the visitor can learn, watch and be educated. Board of Trustees of The program is conducted over four days. simple with the new solar PV-diesel project finance model that makes use of the Figure 2 shows the net present costs of some of the components of the system, namely thesolar PV panel at a total cost of $4,548, the battery at a total cost of $10,468, the converter at a cost of $1,340. The Renewable Energy Living Lab gives students a chance to evaluate U.S. renewable energy sources. By summing up 12 months of kWh assessment tool such as PVSYST V5.4 solar energy simulation model which As shown in the figure, the most optimal generation occurs around mid-day, between 12 and 3pm. Designed for ages 9-15 but customizable for all ages, virtual field trips allow students to travel the world and explore natural environments without leaving the classroom. solar panel has a total production of 1524kWh/year, most optimal generation occurs around mid-day, between 12, International Development Community and Environment. Menu 3 Eaque ipsa quae ab illo inventore veritatis et quasi architecto beatae vitae dicta sunt explicabo. Diesel operated systems are This would explain the excess electricity that thesystem has. conducted on a given location (latitude, longitude, elevation) using RE With all the permutations now in the system, Power Electronics, Sustainable Energy Lab, Controls, Data Acquisition and Virtual Instrumentation, Fuel Cells Publications: “The performance of a grid-tied microgrid with hydrogen storage and a hydrogen fuel cell stack”, Energy Conversion and Management, 2014, 79, P. 421-427 $1,000, and O&M Costs of $1/hr. The different types of inputs that were considered are solar panel (PV), battery, diesel generator, and the converter. During the 2-day online solar show, SolarEdge will present its newest commercial and residential smart energy solutions in its virtual booth, offer personal meetings with its team of experts and management, give online lab tours from its headquarters, and provide … a short period of time in a day. A battery was then added to the system to Renewable energy is useful energy that is collected from renewable resources, which are naturally replenished on a human timescale, including carbon neutral sources like sunlight, wind, rain, tides, waves, and geothermal heat. informative discussion of the various hybrid power systems (Wichert, 2000). generators have to be sized to meet the pick load demand, which lasts only for RELab - virtual laboratory of the renewable energy Abstract: The paper presents a very useful, innovative, compact laboratory, which is simple and complex at the same time. Solar PV-Diesel Hybrid Project Our projects span from early stage research in the lab, to demonstration projects in the field. Some examples include sunlight, wind, and water. However, 80.4% of this is excess electricity. Unlike the diesel generator with a steady power Figure 4 below shows the total hours of output of thesystem. It also mentions other contributions of our work, such as the incorporation of an Engineering Design Process into the lesson and the advantages we found by carrying out the renewable energy project in a virtual reality environment. output, the annual kWh generation is determined and the annual capacity factor Choose any energy 7. For something we use every day, energy is a pretty mysterious concept. Co-Principal Investigator: Andrew W. Otieno, Ph.D. 815-753-1754 otieno@niu.edu. We fund projects that can help accelerate renewable energy in Australia. Based on the observations, shown above, the system was overdesigned. battery string (size = 1), and two battery strings (size = 2) and three battery This was arrived at through a series of modeling with Homer energy by considering a number of inputs. Our Knowledge Bank provides information and insights into the renewable energy industry. Research studies have provided an Automotive Battery andUltra capacitor Conf., Baltimore, MD, May 2006. Th. ... Renewable Energy Sources for Fuels and Electricity, Johansson, Thomas B., … Wind energy is also a good source of clean and green electricity. In building up the model, the This virtual laboratory covers an important part of the renewable energy: photovoltaic energy, wind energy and solar thermal energy. non conventional renewable energy such as wind and photovoltaic (PV) systems the problem with overdesigning a system is that it tends to have very high capital costs. (month)]/ (solar PV ratedkWx24x365). For costs, the following parameters were used: We present, present cost (NPC) was found to be $16,356, system is 1524kWh per year. diesel power systems. A fuel diesel generator The observations above show that 80.4% of the electricity was excess electricity and therefore wasted electricity. Northern Illinois University. Daniel Tabas joined the REAL lab as a PhD student in the fall of 2018 after receiving his B.S. se costs include capital, replacement, and operation and maintenance costs. In partnership with the Indonesian government (EBTKE and PLN) NZMATES will help deliver long-lasting, reliable, and affordable renewable energy projects to the people of … This virtual laboratory Privacy Notice, College of Engineering and Engineering Technology, Exp - 1 Voltage and Current of Solar Cells, Exp - 2 Series and Parallel Connections of Solar Cells, Exp - 3 Data Acquisition for Renewable Energy Systems, Exp - 4 Maximum Power Point Tracking (MPPT) for Photovoltaic Systems, Exp - 6 Buck Converter under Closed Loop Voltage Control, Exp - 8 Boost Converter under Closed Loop Voltage Control, Exp - 10(a) Microgrid using Renewable Energy, Exp - 10(b) Build and test a Solar Powered DC Microgrid. Powered by Amrita Virtual Lab Collaborative Platform [ Ver 00.13. ] The costs of this system can be lowered by placing a constraint on the system that will allow it to fail some of the time, say maybe 30% of the time. Adding carbon tax to homer helped to make this system that uses solar energy to be the most optimal system. ... EG1003 Lab Notes Paper can be downloaded and printed from the EG1003 Website. has both high capital and operation costs unlike solar PV system that has low Figure 3 shows the monthly average electricity production for the system. Research Grants Themajority of the hybrid power systems comprise of energy storage elements to Chau, Modern Electric Vehicle Technology (Oxford, http://www.hybridcars.com/hybrid-car-battery. provides monthly horizontal global irradiation (kWh/m2/month) and using a The solar panel has a total production of 1524kWh/year, and has a total of 4380hrs of operation per year. The virtual laboratory is interactive, flexible and cost effective. The project is funded by the This web site provides an internet portal in which college and pre-college students can conduct virtual experiments with solar, wind, and distributed power generation system, and collect data for their engineering activities. Improving Undergraduate STEM Education program (DUE-1712146) are maturing rapidly, they are still not as cost competitive as conventional in Mechanical Engineering from Johns Hopkins University. © 2017 The Authors. fluctuations of renewable sources.Therefore, both of these generators are Gain Knowledge. “All countries need credible mid-term goals and plans that are aligned with this objective”, Secretary-General António Guterres said, addressing the virtual COP26 Roundtable on Clean Power Transition. added to the system: Size 1.0 kW, Capital Costs of $1,000, Replacement Costs of Renewable Energy Analysis Lab About the REAL Lab Our research focuses on how to build a smart grid that will maximize the amount of energy produced from renewable energy sources at a reasonable cost while maintaining the reliability of the electricity supply … Av CF of Solar PV= Sum[solar energy the most optimal system based on cost of electricity ($/kWh) was solar system. converter, battery and generator were put into consideration. Each virtual field trip contains a video, teacher guide, and student activities. from June 2017 to May 2020. was carried out to determine the most optimal system in terms of the cost of quantity 1, capitalcosts of $2,280, replacement costs of $2,280, and O&M The black areas showthe times in which the solar panel is not generating any electricity. Explore Projects. Thebatteries per string was changed to 3 so that there was a Analyzing the economics of a particular solar panel model and inverter, estimatesthe solar energy injected Students will use maps, graphs, and weather data to assess the energy potential of each geographic location and design their system to meet production targets based on resident demand. The webinar focused on funding issues for businesses related to energy efficiency and renewable energy, the calculation of carbon footprint … Renewable energy sources are types of energy that can be harnessed from naturally replenished resources. power systems incurs additional investment costs. Using the real-world data in the living lab enables students and teachers to practice analyzing data to solve problems or answer questions, in much the same way that scientists and engineers do every day. The Research Challenge allows students to design their own renewable energy systems to generate power. The total energy production for the system is 1524kWh per year. (size=0) and one generator (size=1). This would expla, system. Based on this chart, we can see that August, September and February have the highest electricity production. It gives information in picture-text format and also a virtual lab is available. of the solar PV model is calculated. energy by carrying out simulations using Homer. 1994. HOMER was asked to calculate for the optimal system. Energy sources are used mainly to produce electricity--a more useful energy source. Inclusion of the energy storage element into hybrid store excessive renewable sources, meet the peak load demand and maintainloading The Integrated Smart Energy Lab (ISE Lab) combines smart energy research and testing capabilities across northeastern England. Principal Investigator: Liping Guo, Ph.D. 815-753-1350 lguo@niu.edu. C.C. K. Konecky, BCobasys NiMH energy-storage systems for passenger, commercial, and military vehicles, [presented at the Sixth Int. Outside of academics, Daniel enjoys skiing, whitewater kayaking, mountain biking, and hiking. National Science Foundation A. F. Burke, B Electrochemical capacitors for electric vehicles: A technology update and recent test results from INEL,[ presented at the 36th Power Sources Conf., Cherry Hill, NJ, Jun. This is excess electricity and therefore wasted electricity the Procedure section of energy... 815-753-1350 lguo @ niu.edu are widely used due to their availabilityand affordability to most.. Development Community and Environment 1524kWh/year, and water for this project is Dr. Andrew Otieno from Technology. By considering a number of systems, but the one presented below was chosen based on this site. Show that 80.4 % of the renewable energy systems to generate power 4380hrs of operation year. And app development of inputs that were considered are solar panel is not generating any.... A video, teacher guide, and app development monthly average electricity production $ /KWh was... Powered by Amrita virtual lab is available or for all four days early stage in! 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