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Journal articles on the topic 'Solarenergie'

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1

Körnig, Carsten. "Energie für das 21. Jahrhundert." UmweltMagazin 49, no. 04-05 (2019): 15. http://dx.doi.org/10.37544/0173-363x-2019-04-05-15.

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Ob ebenerdig montiert oder auf Gebäuden, ob auf dem Land oder in der Stadt: Solarenergie bietet Lösungen, um den CO2-Ausstoß zu senken, die Klimaziele zu erreichen und die emissionsbedingte Erderhitzung zu begrenzen. Solarenergie ist günstig, ausgereift und nahezu überall einsetzbar.
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2

Zlonicky, Peter. "Solarenergie in einer Kohleregion?" disP - The Planning Review 31, no. 122 (January 1995): 35–42. http://dx.doi.org/10.1080/02513625.1995.10556586.

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3

Fürstenwerth, Daniel. "Nachhaltige Stromversorgung mittels Solarenergie." BWK ENERGIE. 72, no. 06-07 (2020): 10–11. http://dx.doi.org/10.37544/1618-193x-2020-06-07-10.

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Mit der Klimaschutzsiedlung Hilden setzt die Baugruppe Trialog Hilden, ein gemeinschaftliches Wohnprojekt der Ko-Operativ eG NRW, ein ökologisch und soziales Vorzeigeprojekt um. Sie bietet nicht nur Highlights des modernen, nachhaltigen Bauens, sondern setzt vor allem auf eine nachhaltige Stromerzeugung.
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Sauermost, Michael. "Investitionen in den Energiesektor Kambodschas." UmweltMagazin 49, no. 03 (2019): 56–57. http://dx.doi.org/10.37544/0173-363x-2019-03-56.

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5

Weiß, Julika, Swantje Gährs, and Ray Galvin. "Rebound-Effekte und Prosumer." Ökologisches Wirtschaften - Fachzeitschrift, no. 1 (February 28, 2021): 17–19. http://dx.doi.org/10.14512/oew360117.

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Am Beispiel von Prosumern mit Solarenergie wird dargestellt, wieso es beim Umstieg auf erneuerbare Energien zu Rebound-Effekten kommen kann. Die Gründe hierfür sowie die Rolle politischer Rahmenbedingungen werden basierend auf Interviewergebnissen genauer beleuchtet.
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Leute, Angelika. "Stillgelegter Tagebau als Pumpspeicherwerk." UmweltMagazin 49, no. 04-05 (2019): 28–29. http://dx.doi.org/10.37544/0173-363x-2019-04-05-28.

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Läuft die Kohleverstromung aus, muss sich der Anteil an Wind- und Solarenergie im Strommix erhöhen. Für eine reibungslose Energieversorgung mit erneuerbaren Energien sind große Speicher notwendig, um den Ausgleich zwischen Angebot und Nachfrage zu gewährleisten. Pumpspeicherwerke in stillgelegten Braunkohletagebauen können sich hierfür eignen. Für die rheinischen Tagebaue haben Forscher ein entsprechendes Nachnutzungskonzept entwickelt.
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7

Wagner, Rainer, and Marco Siller. "Zwischenspeicherung von Solarenergie durch Batterien zur Eigenverbrauchserhöhung und Netzstabilisierung." uwf UmweltWirtschaftsForum 21, no. 3-4 (October 19, 2013): 251–59. http://dx.doi.org/10.1007/s00550-013-0295-y.

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Krause, Wolfram. "Sicherheit und Intelligenz auf Modulebene." BWK ENERGIE. 73, no. 9-10 (2021): 46–47. http://dx.doi.org/10.37544/1618-193x-2021-9-10-46.

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Die Installation von Photovoltaik (PV)-Anlagen wird für Hausbesitzerinnen und -besitzer wie auch für Unternehmen aufgrund ihrer verbesserten Wirtschaftlichkeit immer attraktiver. Bei der wachsenden Verbreitung von Solarenergie ist es wichtig zu bedenken, dass es sich um komplexe Mini-Kraftwerke handelt. Wolfram Krause, Director of Product Europe bei SolarEdge Technologies, erläutert was dabei zu bedenken ist und welche Möglichkeiten die „SafeDC“-Technologie hier bietet.
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9

Jitschin, W., H. O. Ruppe, C. J. Winter, and E. O. Schulz-Dubois. "„Physik für Ingenieure”︁/Solarenergie: Unverantwortlicher Ausblick?/In der Sowjetunion aufgeschnappt." Physik Journal 45, no. 10 (October 1989): 423–24. http://dx.doi.org/10.1002/phbl.19890451016.

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10

Wang, Zhou‐jun, Hui Song, Huimin Liu, and Jinhua Ye. "Kopplung von Solarenergie und Wärmeenergie zur Kohlendioxidreduktion: Aktueller Stand und Perspektiven." Angewandte Chemie 132, no. 21 (February 7, 2020): 8092–111. http://dx.doi.org/10.1002/ange.201907443.

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11

Kuhs, G., and J. Schneider. "Energiewende in Australien und Neuseeland." BWK ENERGIE. 72, no. 12 (2020): 57–60. http://dx.doi.org/10.37544/1618-193x-2020-12-57.

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Die Stromproduktion in Australien befindet sich derzeit, trotz großer Vorkommen an Kohlen und Uran, in einer Umbruchphase. Auf dem fünften Kontinent vollzieht sich eine Energiewende in rasantem Tempo. Das Emissionsreduktionsziel von 26 % bis 2030, gemäß des Pariser Klimaschutzabkommens, wird auch wegen hoher Investitionen von 2,2 Mrd. € in den Klimaschutz, der günstigen Geografie für den Ausbau von Wind- und Solarstrom sowie einer geringen Bevölkerungsdichte sicher erreicht. Dagegen deckt Neuseeland schon heute etwa 83 % des Strombedarfs über erneuerbare Energien – vornehmlich Wasserkraft und Geothermie. Positive Aussichten bestehen für Solarenergie, speziell im Wohnbereich.
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12

Utz, B. "Innovationen in der regenerativen Stromerzeugung – neueste Trends und Entwicklungen der Wind- und Solarenergie." e & i Elektrotechnik und Informationstechnik 127, no. 9 (September 2010): 247–48. http://dx.doi.org/10.1007/s00502-010-0763-9.

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13

Möhrlen, Corinna, Markus Pahlow, and Jess U. Jørgensen. "Untersuchung verschiedener Handelsstrategien für Wind- und Solarenergie unter Berücksichtigung der EEG 2012 Novellierung." Zeitschrift für Energiewirtschaft 36, no. 1 (November 17, 2011): 9–25. http://dx.doi.org/10.1007/s12398-011-0071-z.

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14

Hutter, Ralf. "Meereswind oder regionale Sonne?" Forschungsjournal Soziale Bewegungen 33, no. 1 (July 1, 2020): 185–98. http://dx.doi.org/10.1515/fjsb-2020-0015.

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ZusammenfassungIm Streit um große Stromtrassen von Nord- nach Süddeutschland, der auch die Energiewende-Bewegung spaltet, geht es letztendlich um die Grundsatzfrage, wie das weitere Voranschreiten der Energiewende vonstattengehen soll: Soll der Fokus auf großen Windparks im Meer liegen oder auf möglichst regionaler Stromerzeugung? Dieser Artikel beschreibt, dass der Stromtrassenbau auf absehbare Zeit dem deutschen Modell des Strommarkts und dem europäischen Energiehandel geschuldet ist und dass die Kritik an den Trassen deshalb gerechtfertigt ist. Die Hauptargumente der Gegenseite, die die Trassen als nötig für die europäische Energiewende ansieht, werden ebenfalls erwähnt. Nach Hinweisen auf die Diskussion über regionale Strommärkte und die aktuelle Rückkehr der Solarenergie wird als weiterer Aspekt das Gerechtigkeitsproblem dargestellt, dass ländliche Regionen mit wenig Strombedarf unter dem immer größeren Stromhunger der Metropolen leiden, weil sie den Raum für Strominfrastruktur bereitstellen müssen.
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15

Möller, R. "Bericht über die Fünfte Europäische Konferenz "Solarenergie in Architektur und Stadtplanung", 27. - 30. Mai 1998 in Bonn." TATuP - Zeitschrift für Technikfolgenabschätzung in Theorie und Praxis 7, no. 3-4 (September 1, 1998): 95–99. http://dx.doi.org/10.14512/tatup.7.3-4.95.

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16

Kuchenbuch, David. "Ein Atavismus der Hochmoderne? Die Sommerzeit als „social engineering“ (1907–1980)." Historische Zeitschrift 307, no. 1 (August 5, 2018): 1–41. http://dx.doi.org/10.1515/hzhz-2018-0022.

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Zusammenfassung Vor rund hundert Jahren – im Ersten Weltkrieg – zum ersten Mal erprobt, ist die Sommerzeit heute umstrittener denn je: Wird der energiepolitische Nutzen der periodischen Zeitumstellung schon lange bezweifelt, mehren sich die Hinweise auf ihre medizinischen Nachteile. Dabei waren es gerade „biopolitische“ Argumente gewesen, mit denen der britische Bauunternehmer William Willett schon 1907 in seinem Pamphlet „The Waste of Daylight“ die Maßnahme zur verbesserten gesellschaftlichen Ausnutzung der Solarenergie öffentlichkeitswirksam propagiert hatte. Das legt es nahe, die Sommerzeit als Phänomen des „hochmodernen“ social engineering zu analysieren. Wie der Aufsatz am deutschen und britischen Beispiel zeigt, macht die Sommerzeit dann sowohl die sich im späten 19. Jahrhundert immer stärker ausprägenden innergesellschaftlichen (Zeit-)Interdependenzen sichtbar als auch die sozialtechnologische Machbarkeitsgewissheit bürgerlicher Eliten und den Aufschwung des Staates als Hüter der temporalen Ordnung. Die wechselhafte politische Geschichte der Sommerzeit im Deutschland des 20. Jahrhunderts verdeutlicht aber auch, dass sich die Handlungsspielräume der „Ingenieure der Sozialen Zeit“ im Zuge transnationaler Verflechtungsprozesse ebenso stark veränderten wie angesichts der wachsenden Bedeutung der Meinungsforschung. Beide Entwicklungen werfen ein Licht auf die sozial- wie kulturhistorischen Rahmenbedingungen des staatlichen „Zeitens“ (Norbert Elias) im vergangenen Jahrhundert, aus denen sich wiederum theoretische Anregungen für die Untersuchung von Zeitregimes der Moderne ziehen lassen.
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17

Bührke, Th. "Erstes Großteleskop mit aktiver Optik eingeweiht/Jean-Marie Luton designierter ESA-Generaldirektor/Giotto wird reaktiviert/Forschungsverbund „Solarenergie”︁ gegründet/DFG beschließt Förderung deutsch-deutscher Forschungsprojekte/„Cray Gigaflop Performance." Physik Journal 46, no. 3 (March 1990): 104–6. http://dx.doi.org/10.1002/phbl.19900460320.

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18

FURUTA, TSUNEKATSU. "Excellent Solarenergy Absorbing and Retaining Fabric Material." Sen'i Gakkaishi 45, no. 3 (1989): P134—P136. http://dx.doi.org/10.2115/fiber.45.p134.

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19

Zhang, Xuan, Shiming Xu, Ping Wang, Lin Xu, Lei Li, and Lele Chen Chen. "Air Gap Diffusion Distillation: A New Method for Solution Separation Technology." Progress in Energy & Fuels 9, no. 1 (June 2, 2020): 14. http://dx.doi.org/10.18282/pef.v9i1.847.

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<p>Membrane distillation is a distillation technology that has emerged in the last 50 years.Compared with the traditional thermal distillation, membrane distillation has the advantages of compact structure, simple device and easy operation, so many membrane distillation technologies have been developed up to now.Recently, a novel air gap diffusion distillation (AGDD) technique has been proposed.This paper mainly introduces the research progress of air gap membrane distillation, solarenergy distillation and humidification and dehumidification technology in recent years. </p><p> </p>
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20

Huq, Hamidul. "SOLARENERGY FUELS FOR SUSTAINABLE LIVELIHOODS: CASE STUDY OF SOUTHWEST COASTAL REGION OF BANGLADESH." GEOGRAPHY, ENVIRONMENT, SUSTAINABILITY 11, no. 4 (January 4, 2019): 132–43. http://dx.doi.org/10.24057/2071-9388-2018-11-4-132-143.

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Electrification is one of the most crucial factors to ensure social and economic growth in Bangladesh. Being in a developing country, people from various districts of Bangladesh have been experiencing electricity crisis due to the increasing daily demand for power, which outweighs the supply of on-grid electricity. It is noted that about 30 percent of 160 million people, majority living in the rural areas are out of electricity connection in Bangladesh. Consequently, the shortage of energy hampers socioeconomic development and lowers living standards of people. Since, non-renewable sources such as fossil fuels and natural gas, the primary sources of energy production in Bangladesh, are limited, usage of renewable energy technology such as solar energy efficiently can satisfy the rising energy demand and in turn improve the existing energy shortage situation. This study found that Bangladesh has been implementing Solar Home System (SHS) programs that contribute in achieving the target to reach electricity to its every citizen by 2020. As of June 2017 a total of 262,515 households do have solar home systems from which an estimated 1.6 million people are benefitted. This article is written based on a research conducted in the districts of southwest coastal region of Bangladesh where a total of 5.1 million people live of which on an average 42.6 percent are poor and 24.9 percent are extreme poor. In-depth interviews, group discussions, key informant interviews, and household survey were used for collection of data to explore the impacts of SHS on the livelihoods of coastal people of Bangladesh. This research found that impacts of Solar Home System services are both immediate and long-term oriented. SHS program contributes enriching all kinds of livelihoods assets such as human, social, financial and physical of the SHS customers. The poor and extreme poor people of climate vulnerable villages of southwest coastal region of Bangladesh are benefited in different ways from SHS programs such as save daily expenditures for kerosene, doing income generating activities in evening hours by both male and female members of family, children sit for study regularly, women feel safety from lightening of house, they can charge cell phone, they have access to weather forecasting, their social status upgraded, and they save money because they do not need to pay bill for electricity. The SHS is one time investment and they customer can pay for SHS package in installments. As the SHS program approach is environment and poor people friendly, its impacts on livelihoods are found sustainable.
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21

Idris, Ahmad Rosyid, and Sarma Thaha. "Desain Sistem Pembangkit Lisrik Tenaga Surya Pada Tambak Udang sebagai Penggerak Aerator." INTEK: Jurnal Penelitian 6, no. 1 (May 25, 2019): 36. http://dx.doi.org/10.31963/intek.v6i1.1012.

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Indonesia is a tropical region with very large solarenergy where an average daily insulation of 4.5 - 4.8 KWh / m² /day. Based on this fact, solar energy is a potential form ofrenewable energy to be developed. This study aims to design aPLTS system which is the initial stage of planning PLTS systemdevelopment. This system Design uses Matlab software byutilizing the Matrix Unit Interface (GUI) Matlab to calculatethe amount of electrical load to be used, battery capacityrequirements, number of solar modules and large capacity ofthe inverter to be used. Location of the measurement datacollection takes place in the city of Pinrang, area of the Suppasub-district shrimp farm. Measurements are conducted todetermine how much solar radiation and air temperature in thepond area.
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Zhao, Chun Lei, Tian Li, Yun Liang, and Xu Zhang. "The Use of LOLP Operation Design Method in Optimize the Design of Independent Photovoltaic System Based on PVsyst." Applied Mechanics and Materials 727-728 (January 2015): 563–66. http://dx.doi.org/10.4028/www.scientific.net/amm.727-728.563.

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In recent years, energy and environment problems are becoming more andmore serious, become people present and solve the energy crisis in the futurean important way of effective development and utilization of solar energy.Independent photovoltaic system is an important form of effective utilizationof solar energy. On the independent photovoltaic system research andoptimization design is of great significance for the effective use of solarenergy in the future. This paper takes Jilin Province Household independentphotovoltaic power generation system as an example, by using the design methodof the traditional formula and LOLP arithmetic design method are the design ofthe system, the simulation results of PVsyst analysis and comparison of thedata, obtained by LOLP arithmetic design in photovoltaic panels, power andstorage battery capacity is more reasonable, can to meet the needs of users ofthe premise, reduces the investment cost, improving the utilization rate of theequipment.
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23

Fakhru-Nisa, Tehreem Tahir, Muhammad Ashfaq, Mirza Imran Shahzad, and Syeda Taiba Bukhari. "Recent Approaches in the Extraction of Citrus Metabolites." Current Biotechnology 8, no. 2 (January 20, 2020): 85–95. http://dx.doi.org/10.2174/2211550108666191210101516.

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The review summarizes the recent (2016-2019) practical applications of novel extraction methods for Citrus metabolite extraction, such as microwave-assisted (MAE), ultrasound-assisted (UAE), super-critical carbon dioxide (SC-CO2) and enzyme-assisted extraction (EAE) with the aim to compare efficiencies based on the criteria of enhanced (%) yield, cost-effectiveness, reproducibility, eco-friendliness, time/energy consumed and industrial scale application. It was found that supercritical carbon dioxide extraction (SC-CO2) is the most successful and scaled-up technique when compared to MAE, UAE, Soxhlet and EAE, following the trend: SC-CO2 > EAE > UAE > MAE. However, other novel approaches, including pulse-electric field (PEF), sub-critical water extraction (SWE), solarenergy assisted extraction (SE) and molecularly imprinted polymers (MIPs), that have not been well explored for Citrus bioactives extraction, have the potential to be coupled with conventional as well as contemporary methods leading to an innovative hypothetical scaled-up design.
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24

"Solarbundesliga: Kreative Nutzung von Solarenergie." Innovative Verwaltung 35, no. 7-8 (June 26, 2013): 6. http://dx.doi.org/10.1007/s35114-013-0442-x.

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25

"Solarenergie: Perowskit-Solarzellen auf der Überholspur?" Keramische Zeitschrift 72, no. 6 (November 2020): 24–25. http://dx.doi.org/10.1007/s42410-020-0155-7.

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26

"5. Europäische Konferenz: Solarenergie in Architektur und Stadtplanung." Bautechnik 75, no. 1 (January 1998): 53. http://dx.doi.org/10.1002/bate.199800440.

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27

"5. Europäische Konferenz - Solarenergie in Architektur und Stadtplanung." Bautechnik 75, no. 2 (February 1998): 127. http://dx.doi.org/10.1002/bate.199801120.

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28

Rolle, Siegfried, Roy-Oliver Adams, Marko Friedemann, Henner Hoppe, and Michael Jergovic. "Kapillarrohrmattensystem zur effektiven Nutzung von Solarenergie und Erdwärme." Wissenschaftliche Beiträge / Technische Hochschule Wildau, 1998. http://dx.doi.org/10.15771/0949-8214_1998_2_20.

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29

Hollensteiner, Katharina. "Compliance im Bereich der Regenerativen Energien – Herausforderungen an Compliance im internationalen Projektgeschäft im Bereich der Solarenergie." Risk, Fraud & Compliance, no. 5 (September 30, 2010). http://dx.doi.org/10.37307/j.1867-8394.2010.05.04.

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30

"Wärmepumpen-EXPO und SOLAREnergy." Bautechnik 78, no. 5 (May 2001): 384. http://dx.doi.org/10.1002/bate.200102450.

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31

Stevović, Ivan. "STRATEGIC ORIENTATION TO SOLAR ENERGY PRODUCTIONAND LONG TERM FINANCIAL BENEFITS." Archives for Technical Sciences 1, no. 17 (October 31, 2017). http://dx.doi.org/10.7251/afts.2017.0917.001s.

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The strategy for developing and improving the application of green, clean, renewable and gratis solarenergy is a challenge for multidisciplinary teams of scientists. Exquisite examples of positive worldpractice of the largest solar power plants are presented in this paper, with all the characteristics, startingfrom the materials of photovoltaic panels and technical performance to the cost and financial benefits.The aim was to analyze the development of solar technologies in the function of defining furtherperspectives. The techno economic feasibility of the strategic orientation towards solar energy has beendemonstrated in the model of the solar power plant, carried out by experiment, profitability calculationand multi-criteria analysis. The conclusion is that long-term financial and holistic benefits can beachieved by investing in solar power plants.
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32

"Analytical Modelling of Premises-Specific Solar-Energy Estimation." International Journal of Recent Technology and Engineering 8, no. 4 (November 30, 2019): 10971–74. http://dx.doi.org/10.35940/ijrte.d5417.118419.

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Solar energy is great potential for future energy due affordability of solar related panels and equipment. SolarEnergy Microgrid for serving DC and AC loads of areas under consideration. Microgrid is a new concept for making safe, clean, and renewable solar available for use. Most of the countries have developed it solar farm in order to harvest the energy and make it useable for daily use. This energy can be used either for premises-specific loads and also distributed to other regions through the national grid through what is called Distributed Generation (DG). Estimating solar energy potential estimation of premises under target is obviously an exercise that may prove in the design of such DG microgrids. This paper presents two analytical modelling approaches for estimating the solar energy potential of a given geographical location. The two approaches are explored for estimation two very closely related amount of solar energy in kWh for eleven hours of time of a day using Heliocentris Hybrid Energy Lab-System data. The approaches may find utility in the pursuits of the renewable energy estimation needed for designing PV-solar microgrid. The mismatch of 6.31% energy estimation between the two approaches may be due to parametric complaint inaccuracy instead of the approaches employed.
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Hondovska, Anna Serhiivna, Roman Ihorovych Didus, Vladyslav Anatoliiovych Lapshuda, and Olha Vasylivna Yashchenko. "Deposition of Molybdenum Oxide Thin Films for Flexible Biodegradable Electronics." Electronic and Acoustic Engineering 4, no. 1 (July 22, 2021). http://dx.doi.org/10.20535/2617-0965.eae.227276.

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With its unprecedented properties over conventional rigid platforms, flexible electronics have been a significant research topic in the last decade, offering a broad range of applications from bendable display, flexible solarenergy systems, to soft implantable-devices for health monitoring. Flexible electronics is a disruptive science that requires a high level of multi-disciplinary research, including chemistry, physics, material science, electronic and electrical engineering, mechanical engineering, computing science, biomedical engineering. The deep cross-integrate of it with other key subjects such as artificial intelligence, material science, Internet of things, space science, health science, energy science and data science, breaks through the intrinsic limitations of convention silicon electronics and affords unprecedented opportunities for relative industries involving integrated circuit, new and renewable. One way to reduce the cost of photoconverters is to use transition metal oxide, which is characterized by better solar energy conversion efficiency. is one of the promising candidates due to its nontoxicity, deep electronic state and relative lower vaporization temperature, which can easily deposited in vacuum. In contrast, the other transition metal oxides need relative higher evaporation temperature to deposit the film. The conventional and common fabrication methods for are thermal evaporation or sputtering under vacuum. This work presents molybdenum oxide films grown on nanocellulose. Molybdenum oxide thin films were grown by reactive ion beam sputtering on UVN-75R equipment. Measurements of thin film transparency spectra and the effect of bending on the transparency value were measured using a 4802 UV/VIS Double Beam Spectrophotometer. The energy-dispersion X-ray spectrum showed no impurities. The chemical composition of molybdenum oxide thin films was studied on the basis of energy-dispersion analysis, in which the characteristic X-ray radiation of the sample surface under the action of accelerated electron irradiation was recorded. For this purpose, a scanning electron microscope REM-106U in the mode of elemental microanalysis was used. The films show high transparency in the visible spectrum, as well as a low influence of bending on the transparency in the ultraviolet spectrum. Bending of the manufactured samples reduces the amount of transparency. Increasing the deposition temperature of the films has the same effect as bending. Combining the excellent electrical properties of and the high flexibility and transparency of nanocellulose, an excellent replacement for silicon heterostructures has been demonstrated.
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