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Journal articles on the topic 'Integrated solar panel antenna'

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1

Alam, Touhidul, Mohammad Tariqul Islam, Md Amanath Ullah, and Mengu Cho. "A Solar Panel-Integrated Modified Planner Inverted F Antenna for Low Earth Orbit Remote Sensing Nanosatellite Communication System." Sensors 18, no. 8 (2018): 2480. http://dx.doi.org/10.3390/s18082480.

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One of the most efficient methods to observe the impact of geographical, environmental, and geological changes is remote sensing. Nowadays, nanosatellites are being used to observe climate change using remote sensing technology. Communication between a remote sensing nanosatellite and Earth significantly depends upon antenna systems. Body-mounted solar panels are the main source of satellite operating power unless deployable solar panels are used. Lower ultra-high frequency (UHF) nanosatellite antenna design is a crucial challenge due to the physical size constraint and the need for solar pane
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2

Teklehaimanot, Yemane Ghebremedhin, Sinshaw Bekelle, and Mohammed Ismail. "Performance Evaluation of Fractal Array Antenna for Small Satellite Applications." Indonesian Journal of Electrical Engineering and Computer Science 3, no. 2 (2016): 356. http://dx.doi.org/10.11591/ijeecs.v3.i2.pp356-368.

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<p class="Default">The possible antenna which can be integrated with relatively large flat structure of solar panel of small satellites is patch antenna. The main problem of common Microstrip patch antennas is that they only operate at one or two frequencies, restricting the number of bands that equipment is capable of supporting. Another issue is that, due to the very strict space that a solar panel has, setting up more antenna array is very difficult. To reduce these problems, the use of fractal shaped antennas integrated on solar cells will be analyzed. The small satellite application
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3

Vaccaro, S., P. Torres, J. R. Mosig, et al. "Integrated solar panel antennas." Electronics Letters 36, no. 5 (2000): 390. http://dx.doi.org/10.1049/el:20000350.

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4

Jeevagan Navukarasu Lenin, G., R. Vimala, S. Arun Prakash, and K. R. Aravind Britto. "Solar panel integrated compact magneto-dielectric loaded sequentially rotated navigation antenna." AEU - International Journal of Electronics and Communications 108 (August 2019): 215–20. http://dx.doi.org/10.1016/j.aeue.2019.06.033.

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5

Jones, Thomas R., John P. Grey, and Mojgan Daneshmand. "Solar Panel Integrated Circular Polarized Aperture-Coupled Patch Antenna for CubeSat Applications." IEEE Antennas and Wireless Propagation Letters 17, no. 10 (2018): 1895–99. http://dx.doi.org/10.1109/lawp.2018.2869321.

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6

Фёдоров, С. М., И. А. Черноиваненко, and Е. А. Ищенко. "OVERVIEW OF METHODS TO INTEGRATE ANTENNAS AND SOLAR CELLS." ВЕСТНИК ВОРОНЕЖСКОГО ГОСУДАРСТВЕННОГО ТЕХНИЧЕСКОГО УНИВЕРСИТЕТА, no. 2 (May 11, 2021): 94–100. http://dx.doi.org/10.36622/vstu.2021.17.2.015.

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Рассматриваются методы проектирования для расширенной интеграции низкопрофильных антенн с солнечными системами для беспроводной связи малого радиуса действия. Необходимость перехода к более устойчивым источникам энергии возникает из-за чрезмерного производства вредных выбросов углерода. Основное внимание уделяется способам интеграции антенн и солнечных панелей из кристаллического кремния. Было предложено решение для минимизации чувствительности, которое использовалось для успешной изоляции микрополосковой линии передачи от солнечной решетки, что позволило продемонстрировать пять конфигураций а
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7

Yekan, Taha, and Reyhan Baktur. "Conformal Integrated Solar Panel Antennas: Two effective integration methods of antennas with solar cells." IEEE Antennas and Propagation Magazine 59, no. 2 (2017): 69–78. http://dx.doi.org/10.1109/map.2017.2655577.

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8

Alam, Touhidul, Mohammad Tariqul Islam, Md Amanath Ullah, et al. "Design and compatibility analysis of a solar panel integrated UHF antenna for nanosatellite space mission." PLOS ONE 13, no. 11 (2018): e0205587. http://dx.doi.org/10.1371/journal.pone.0205587.

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9

Pal, Poushali, Parvathy Ayalur Krishnamoorthy, Devabalaji Kaliaperumal Rukmani, et al. "Optimal Dispatch Strategy of Virtual Power Plant for Day-Ahead Market Framework." Applied Sciences 11, no. 9 (2021): 3814. http://dx.doi.org/10.3390/app11093814.

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Renewable energy sources prevail as a clean energy source and their penetration in the power sector is increasing day by day due to the growing concern for climate action. However, the intermittent nature of the renewable energy based-power generation questions the grid security, especially when the utilized source is solar radiation or wind flow. The intermittency of the renewable generation can be met by the integration of distributed energy resources. The virtual power plant (VPP) is a new concept which aggregates the capacities of various distributed energy resources, handles controllable
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10

Cai. "An On-Glass Optically Transparent Monopole Antenna with Ultrawide Bandwidth for Solar Energy Harvesting." Electronics 8, no. 9 (2019): 916. http://dx.doi.org/10.3390/electronics8090916.

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An on-glass optically transparent monopole antenna with ultrawide bandwidth is presented in this work, and the proposed antenna is of ring shape and coplanar waveguide fed structure. Optically transparent indium tin oxide (ITO) thin film with a thickness of ~160 nm is used as the conductive layer, which is sputtered on an optically transparent glass substrate. An impedance bandwidth of 6 GHz from 1 to 7 GHz is achieved, with a return loss lower than −10 dB, meaning a fractional bandwidth of 150%. The proposed antenna exhibits reasonable radiations of omni-directionality in the H plane and bi-d
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11

Guo, Lei, Kwok Wa Leung, Shi Qi Wang, and Kim Fung Tsang. "Investigation of Antenna-Integrated Transparent Socket Panel." IEEE Access 6 (2018): 73001–8. http://dx.doi.org/10.1109/access.2018.2879832.

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12

Hwu, S. U., L. A. Johnson, and R. J. Panneton. "Solar panel scattering effects on reflector antenna performance." Electronics Letters 33, no. 8 (1997): 650. http://dx.doi.org/10.1049/el:19970436.

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13

Xi, Baoliang, Xianling Liang, Qian Chen, Kun Wang, Junping Geng, and Ronghong Jin. "Optical Transparent Antenna Array Integrated With Solar Cell." IEEE Antennas and Wireless Propagation Letters 19, no. 3 (2020): 457–61. http://dx.doi.org/10.1109/lawp.2020.2969694.

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14

Vaccaro, S., P. Torres, J. R. Mosig, et al. "Stainless steel slot antenna with integrated solar cells." Electronics Letters 36, no. 25 (2000): 2059. http://dx.doi.org/10.1049/el:20001467.

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15

Lemey, Sam, Frederick Declercq, and Hendrik Rogier. "Dual-Band Substrate Integrated Waveguide Textile Antenna With Integrated Solar Harvester." IEEE Antennas and Wireless Propagation Letters 13 (2014): 269–72. http://dx.doi.org/10.1109/lawp.2014.2303573.

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16

Pontius, Nancy L. "Integrated Solar Panel Generates Electricity and Heats Water." Civil Engineering Magazine Archive 80, no. 2 (2010): 38–39. http://dx.doi.org/10.1061/ciegag.0000610.

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17

An, Wenxing, Shenheng Xu, Fan Yang, and Jianfeng Gao. "A Ka-Band Reflectarray Antenna Integrated With Solar Cells." IEEE Transactions on Antennas and Propagation 62, no. 11 (2014): 5539–46. http://dx.doi.org/10.1109/tap.2014.2354424.

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18

Moharram, Mohamed A., and Ahmed A. Kishk. "Optically Transparent Reflectarray Antenna Design Integrated With Solar Cells." IEEE Transactions on Antennas and Propagation 64, no. 5 (2016): 1700–1712. http://dx.doi.org/10.1109/tap.2016.2539379.

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19

Obukhovets, Victor. "Designing problems of antennas integrated with solar batteries." ITM Web of Conferences 30 (2019): 05009. http://dx.doi.org/10.1051/itmconf/20193005009.

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Designing problems of microstrip antennas placed on the solar battery surface and using it as a substrate are considered. Computational models taking into account the elements of its costruction and parameters of solar battery were performed by means of ANSYS HFSS. A number of numerical experiments for several antenna models were fulfilled. The aim of them is to design microstrip antenna integrated with solar battery without decreasing of solar elements effectiveness. The results of numerical experiments for several projects of microwave radiators with solid or mesh surface of the patch are pr
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20

Das, Susanta K., and David Frank. "Assessment of various parametric effects on the performance of a commercial grade photovoltaic solar panel." E3S Web of Conferences 122 (2019): 02002. http://dx.doi.org/10.1051/e3sconf/201912202002.

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This paper presents the implementation of an integrated photovoltaic solar panel model which includes all the necessary parameters in order to simulate and analyze using Matlab/Simulink software. The integrated photovoltaic model is validated with Matlab/Simulink simulation for a commercially available 100W photovoltaic solar panel module. Using the commercial solar panel specifications, such as solar irradiation, panel temperature, etc. the integrated model solved with Matlab/Simulink returns an I-V and P-V performance characteristics under various conditions which enabled detailed analysis,
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21

Zarbakhsh, Saman, Mohammad Akbari, Mohammadmahdi Farahani, Alireza Ghayekhloo, Tayeb A. Denidni, and Abdel-Razik Sebak. "Optically Transparent Subarray Antenna Based on Solar Panel for CubeSat Application." IEEE Transactions on Antennas and Propagation 68, no. 1 (2020): 319–28. http://dx.doi.org/10.1109/tap.2019.2938740.

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22

Jamlos, Mohd Aminudin, Maswani Khairi, Sharifah Nur Ariffah, Wan Azani Mustafa, Syed Zulkarnain Syed Idrus, and Atiqah Muhammad. "5.8 GHz Circular Polarized Microstrip Feeding Antenna for Solar Panel Application." IOP Conference Series: Materials Science and Engineering 932 (December 18, 2020): 012077. http://dx.doi.org/10.1088/1757-899x/932/1/012077.

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23

Galinovsky, A. L., A. V. Denisov, E. A. Gavrilova, M. A. Denisova, V. G. Chertov, and S. A. Eremin. "Designing frames of integrated cfrp solar panels for spacecraft." Proceedings of Higher Educational Institutions. Маchine Building, no. 12 (717) (December 2019): 49–60. http://dx.doi.org/10.18698/0536-1044-2019-12-49-60.

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This article deals with the problem of ensuring the competitiveness of space systems by increasing the energy and mass efficiency of solar panels. It provides a review of modern designs of the solar panel frames intended for use in spacecraft, and a choice of design and technological solutions for the creation of integrated structures of the solar panel frames with a low specific weight. A model of a composite integrated frame is developed that ensures the bearing capacity of the solar panel at a given static gravitational load at the time of launch and in operation. The results of the selecti
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24

Ta, Son Xuat, Jae Jin Lee, and Ikmo Park. "Solar-Cell Metasurface-Integrated Circularly Polarized Antenna With 100% Insolation." IEEE Antennas and Wireless Propagation Letters 16 (2017): 2675–78. http://dx.doi.org/10.1109/lawp.2017.2740570.

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25

Wu, Terence, Ronglin Li, and Manos M. Tentzeris. "A Scalable Solar Antenna for Autonomous Integrated Wireless Sensor Nodes." IEEE Antennas and Wireless Propagation Letters 10 (2011): 510–13. http://dx.doi.org/10.1109/lawp.2011.2152357.

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26

Indrasari, Widyaningrum, Riser Fahdiran, Umiatin, and Habiburosid. "The Active Hybrid Solar Panel integrated with Fresnel Lens Concentrator." Journal of Physics: Conference Series 1485 (March 2020): 012005. http://dx.doi.org/10.1088/1742-6596/1485/1/012005.

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27

Pethuraja, Gopal G., Roger E. Welser, John W. Zeller, et al. "Antireflection coatings for solar panel power output enhancement." MRS Proceedings 1771 (2015): 67–72. http://dx.doi.org/10.1557/opl.2015.509.

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ABSTRACTThe impact of nanostructured broadband antireflection (AR) coatings on solar panel performance has been projected for a broad range of panel tilt angles at various locations. AR coated films have been integrated on test panels and the short-circuit current has been measured for the entire range of panel tilts. The integration of the AR coatings resulted in an increase in short-circuit current of the panels by eliminating front sheet reflection loss for a broad spectrum of light and wide angle of light incidence. The short-circuit current enhancement is 5% for normal light incidence and
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28

Zhang, Xin Jian, Cheng Peng, and Pei Liu. "Research on High-Rise Building Integrated Automatic Tracking Solar Water Heater." Advanced Materials Research 935 (May 2014): 12–17. http://dx.doi.org/10.4028/www.scientific.net/amr.935.12.

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In order to solve the problem that high-rise users can't install traditional solar water heater for limited area and the problem that the utilization rate of panel position fixed solar energy is low, this paper proposed a new design of high-rise building integration solar water heater, which can make solar water heater integrate with high-rise building, and has the function of tracking sunlight automatically in real time, raising the utilization ratio of solar energy, and prolonging sunshine time. In addition, the auxiliary electrical heating system can be intelligently started or closed by se
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29

Wan, Xin Ning, Jian Xiong Li, Xu Sheng Cui, and Lu Hong Mao. "Design of Antenna with a Solar Cell as a Parasitic Element in the UHF RFID Tag." Advanced Materials Research 301-303 (July 2011): 257–62. http://dx.doi.org/10.4028/www.scientific.net/amr.301-303.257.

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This paper presents a novel RFID antenna which makes solar cell and tag antenna combine as an integrated unit. The solar cell is used as a parasitic element in a tag antenna. The original feature of a solar cell (DC current generation) remains, and the solar cell which can supply the energy to activate the IC is now used as a parasitic patch at the same time. Besides a general description of solar cell antenna, the size and the simulated results of the antenna are also shown.
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30

YOSHIDA, Yuki, Yoshiharu KIDO, Hiroyuki HAYAKAWA, and Shigeo KAWASAKI. "Active integrated amplifier antenna arrays for a space solar power satellite." Journal of Advanced Science 12, no. 1/2 (2000): 26–27. http://dx.doi.org/10.2978/jsas.12.26.

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31

Jeremy, Dimitri, Vincent Utama, Patrick Fellipe Army, and Erwani Merry Sartika. "Perancangan Integrated Transfer Switch (ISTS) bagi Pengguna Panel Surya." Jurnal Rekayasa Hijau 5, no. 1 (2021): 39–48. http://dx.doi.org/10.26760/jrh.v5i1.39-48.

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ABSTRAKPotensi akan energi surya yang besar di Indonesia mendorong masyarakat untuk memanfaatkan energi tersebut. Umumnya energi listrik tersebut akan disimpan pada baterai dan semakin besar persentase dari Depth of Discharge (DOD) akan mempersingkat umur baterai. Sistem Automatic Transfer Switch (ATS) melakukan pemilihan secara otomatis, namun bekerja tanpa memperhatikan kondisi sistem panel surya sehingga mempersingkat umur baterai. Pada penelitian ini dilakukan integrasi antara ATS dengan sistem panel surya yang disebut Integrated Transfer Switch (ISTS). Sistem ISTS ini dirancang untuk mela
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32

Yong, Cui, Wang Yiping, and Zhu Li. "Performance analysis on a building-integrated solar heating and cooling panel." Renewable Energy 74 (February 2015): 627–32. http://dx.doi.org/10.1016/j.renene.2014.08.076.

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33

Hong, Wonbin, Sangho Lim, Seungtae Ko, and Yoon Geon Kim. "Optically Invisible Antenna Integrated Within an OLED Touch Display Panel for IoT Applications." IEEE Transactions on Antennas and Propagation 65, no. 7 (2017): 3750–55. http://dx.doi.org/10.1109/tap.2017.2705127.

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34

Ooshaksaraei, P., K. Sopian, R. Zulkifli, M. A. Alghoul, and Saleem H. Zaidi. "Characterization of a Bifacial Photovoltaic Panel Integrated with External Diffuse and Semimirror Type Reflectors." International Journal of Photoenergy 2013 (2013): 1–7. http://dx.doi.org/10.1155/2013/465837.

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Silicon wafer accounts for almost one-half the cost of a photovoltaic (PV) panel. A bifacial silicon solar cell is attractive due to its potential of enhancing power generation from the same silicon wafer in comparison with a conventional monofacial solar cell. The bifacial PV cell is able to capture solar radiation by back surface. This ability requires a suitable reflector appropriately oriented and separated from the cell’s rear surface. In order to optimize the bifacial solar cell performance with respect to an external back surface reflector, diffuse and semimirror reflectors were investi
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35

Abdulmjeed, Ahmed, Taha Ahmed Elwi, and Sefer Kurnaz. "METAMATERIAL VIVALDI PRINTED CIRCUIT ANTENNA BASED SOLAR PANEL FOR SELF-POWERED WIRELESS SYSTEMS." Progress In Electromagnetics Research M 102 (2021): 181–92. http://dx.doi.org/10.2528/pierm21032406.

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36

Agarwal, Siddharth. "Solar Panel Cells as Power Source and Li-Fi Data Nodes Integrated with Solar Concentrator." International Journal of Engineering and Applied Computer Science 02, no. 05 (2017): 172–75. http://dx.doi.org/10.24032/ijeacs/0205/05.

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37

Ivanov, D. S., S. V. Meus, A. B. Nuralieva, et al. "Attitude control and determination algorithms for the spacecraft with two flexible appendages." Spacecrafts & Technologies 3, no. 3 (2019): 132–39. http://dx.doi.org/10.26732/2618-7957-2019-3-132-139.

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The paper covers the attitude control and determination algorithms of the satellite equipped with two flexible appendages. One of the appendages is an antenna. It is connected to the satellite bus inelastically. The antenna itself is a major disturbance factor. Its dimensions by far exceed the dimensions of the bus, and the eigen frequencies of the antenna oscillations are low. The second appendage is a solar panel. The spacecraft moves on the geostationary orbit. The panel is connected via the one degree of freedom hinge. It rotates with the constant rate to provide continuous solar panel att
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38

Yan, Mao, Li Zhu, Yi Ping Wang, and Ming Ze Zhu. "Heating and Cooling Performance of Building Integrated Solar Roof Panels." Advanced Materials Research 168-170 (December 2010): 1735–41. http://dx.doi.org/10.4028/www.scientific.net/amr.168-170.1735.

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With the high proportion of building energy consumption in the total energy consumption, it is of great importance to relieve the shortage of conventional energy resources and improve the building environment by incorporating solar energy into buildings. A new type solar roof panels were designed and tested in the present paper, which perfectly achieves the integration of solar equipment with building envelope. This panel can act as the construction component for building envelope and completely removes the double-skin mode for conventional solar equipment, as well as the functional equipment
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39

Zainud-Deen, S. H., N. A. El-Shalaby, S. M. Gaber, and H. A. Malhat. "Circularly Polarized Transparent Microstrip Patch Reflectarray Integrated with Solar Cell for Satellite Applications." International Journal of Microwave Science and Technology 2016 (September 8, 2016): 1–7. http://dx.doi.org/10.1155/2016/6102530.

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Circularly polarized (CP) transparent microstrip reflectarray antenna is integrated with solar cell for small satellite applications at 10 GHz. The reflectarray unit cell consists of a perfect electric conductor (PEC) square patch printed on an optically transparent substrate with the PEC ground plane. A comparison between using transparent conducting polymers and using the PEC in unit-cell construction has been introduced. The waveguide simulator is used to calculate the required compensation phase of each unit cell in the reflectarray. The radiation characteristics of 13 × 13 CP transparent
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40

Chandrasekaran, B. "A Review of RF Antenna Integrated with Solar Array for Spacecraft Application." International Journal for Research in Applied Science and Engineering Technology 8, no. 1 (2020): 717–22. http://dx.doi.org/10.22214/ijraset.2020.1123.

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41

An, Wenxing, Lin Xiong, Shenheng Xu, Fan Yang, Hai-Peng Fu, and Jian-Guo Ma. "A Ka-Band High-Efficiency Transparent Reflectarray Antenna Integrated With Solar Cells." IEEE Access 6 (2018): 60843–51. http://dx.doi.org/10.1109/access.2018.2875359.

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42

Kawasaki, S., Y. Kido, and T. Takano. "Laminated active integrated amplifier antenna arrays for a space solar power satellite." IEEE Transactions on Microwave Theory and Techniques 47, no. 9 (1999): 1901–9. http://dx.doi.org/10.1109/22.788528.

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43

Zhao, Yan, Wenxing An, Yu Luo, ShenRong Li, Lin Xiong, and Shijie Yu. "Low-Profile Antenna Integrated With Solar Cells for the 2.4 GHz Band." IEEE Antennas and Wireless Propagation Letters 20, no. 4 (2021): 443–47. http://dx.doi.org/10.1109/lawp.2021.3051795.

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44

Hadiningrat, Mahendra Satria. "Edukasi Pembangkit Listrik Tenaga Surya Buatan “Integrated Solar Panel-Sensitized Solar Cell” Bagi Madrasah Aliyah NU Lekok dan Masyarakat Dusun Semongkrong, Pasinan, Pasuruan." Jurnal Abdimas Berdaya : Jurnal Pembelajaran, Pemberdayaan dan Pengabdian Masyarakat 3, no. 02 (2020): 92. http://dx.doi.org/10.30736/jab.v3i02.59.

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Telah dilakukan program kegiatan pengabdian masyarakat, mengkhususkan dengan merancang dan membuat panel surya buatan berbiaya rendah untuk MA NU Lekok dan Masyarakat dusun Semongkrong Barat-Tengah, Pasinan, Pasuruan dan sekitarnya. Tujuan kegiatan yang kami lakukan adalah memberi edukasi dan pengembangan diri kepada peserta didik khususnya di sekolah MA NU Lekok dan memberikan bantuan alat panel surya untuk 10 titik penerangan jalan di Dusun Semongkrong Barat-Tengah. Setelah diadakannya pembinaan dan pelatihan berkala, diharapkan peserta didik dan masyarakat dusun sudah memiliki kompetensi un
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45

Peter, Thomas, Tharek Abd Rahman, S. W. Cheung, Rajagopal Nilavalan, Hattan F. Abutarboush, and Antonio Vilches. "A Novel Transparent UWB Antenna for Photovoltaic Solar Panel Integration and RF Energy Harvesting." IEEE Transactions on Antennas and Propagation 62, no. 4 (2014): 1844–53. http://dx.doi.org/10.1109/tap.2014.2298044.

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46

Davis, Mark W., A. Hunter Fanney, and Brian P. Dougherty. "Prediction of Building Integrated Photovoltaic Cell Temperatures*." Journal of Solar Energy Engineering 123, no. 3 (2001): 200–210. http://dx.doi.org/10.1115/1.1385825.

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A barrier to the widespread application of building integrated photovoltaics (BIPV) is the lack of validated predictive performance tools. Architects and building owners need these tools in order to determine if the potential energy savings realized from building integrated photovoltaics justifies the additional capital expenditure. The National Institute of Standards and Technology (NIST) seeks to provide high quality experimental data that can be used to develop and validate these predictive performance tools. The temperature of a photovoltaic module affects its electrical output characteris
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47

An, Wenxing, Wenli Zhao, Hui Wang, Yu Luo, Jian Wang, and Xiangdong Huang. "Dual-function slot antenna integrated with solar cells for the 1.575-GHz band." IEICE Electronics Express 17, no. 21 (2020): 20200322. http://dx.doi.org/10.1587/elex.17.20200322.

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48

Yekan, Taha, and Reyhan Baktur. "An X band patch antenna integrated with commercial triple-junction space solar cells." Microwave and Optical Technology Letters 59, no. 2 (2016): 260–65. http://dx.doi.org/10.1002/mop.30275.

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49

Alobaidi, O. R., P. Chelvanathan, B. Bais, et al. "Vacuum annealed Ga:ZnO (GZO) thin films for solar cell integrated transparent antenna application." Materials Letters 304 (December 2021): 130551. http://dx.doi.org/10.1016/j.matlet.2021.130551.

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50

Abu Qahouq, Jaber A., Yuncong Jiang, and Mohamed Orabi. "MPPT Control and Architecture for PV Solar Panel with Sub-Module Integrated Converters." Journal of Power Electronics 14, no. 6 (2014): 1281–92. http://dx.doi.org/10.6113/jpe.2014.14.6.1281.

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