A Solar Input Wpt Using Resonance Induction Coupling

Authors

  • Shilpshri V N  Asst.Professor, Department of EEE, GSSSIETW, Mysuru, Karnataka, India
  • Vidyashree M S  Asst.Professor, Department of EEE, GSSSIETW, Mysuru, Karnataka, India

Keywords:

Solar Panel, Capacitor Bank, High Frequency Converter, Half bridge Driver, Resonant Transmitter Antenna, HF Rectifier Resonant Receiver Antenna.

Abstract

Solar Power Satellites (SPS) converts solar energy into electromagnetic waves and sends that microwaves in to a beam to a receiving antenna on the Earth for conversion to ordinary Electricity. SPS is a clean, large-scale, stable electric power source. For SPS Wireless power transmission is essential. WPT contains microwave beam, which can be directed to any desired location on Earth surface. This beam collects Solar Energy and converts it into Electrical Energy. This concept is more advantageous than conventional methods. The SPS will be a central attraction of space and energy technology in coming decades. It is not a pollutant but more aptly, a man made extension of the naturally generated electromagnetic spectrum that provides heat and light for our sustenance. Wireless Power transmission (WPT) is a useful and convenient technology that can be employed to collect solar energy and concentrate on earth surface without the need for a wire connection called solar power satellites (SPS). This project provides an analysis of wireless power transfer with an assessment of its practical applicability in terms of power range and efficiency. Wireless power transmission is a useful and convenient technology that can be employed to collect solar energy (Renewable energy) and concentrate on earth surface without the need for a wire connection. Transferring of electrical energy from transmitting to receiving antenna up to 20 V of input 12 V of frequency 65 KHz transfer up to the distance of 10 cm

References

  1. Blackwell, “Recent demonstrations of laser power beaming at DFRC and MSFC,” AIP Conference Proceeding, Beamed Energy Propulsion. Third International Symposium on Beam Energy Propulsion, vol. 766, pp.73-85, Apr. 2005.
  2. Chattopadhyay, H. Manohara, M. Mojarradi, Tuan Vo, H. Mojarradi, Sam Bae, and N. Marzwell, “Millimeter-wave wireless power transfer technology for space applications,” Asia-Pacific Microwave Conference, pp.1-4, Dec. 2008.
  3. H. Wu, G. A. Covic, J. T. Boys, and D. J. Robertson, “A series-tuned inductive-power-transfer pickup with a controllable AC-voltage output,” IEEE Transactions on Power Electronics, vol.26, no.1, pp.98-109, Jan. 2011.
  4. P. Kamat, “Energy management architecture for multimedia applications in battery powered devices,” IEEE Transactions on Consumer Electronics, vol.55, no.2, pp.763-767, May 2009.
  5. Kato and C. -T. D. Lo, “Power Consumption Reduction in Java-enabled, Battery-powered Handheld Devices through Memory Compression,” IEEE International Symposium on Consumer Electronics, pp.1-6, 20-23 June 2007.
  6. Karalis, J. D. Joannopoulos, and M. Soljacic, “Efficient wireless nonradiative mid-range energy transfer,” Annals of Physics, vol.323, no.1, pp.34-48, Jan. 2008.

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Published

2018-05-08

Issue

Section

Research Articles

How to Cite

[1]
Shilpshri V N, Vidyashree M S, " A Solar Input Wpt Using Resonance Induction Coupling , IInternational Journal of Scientific Research in Computer Science, Engineering and Information Technology(IJSRCSEIT), ISSN : 2456-3307, Volume 4, Issue 6, pp.939-946, May-June-2018.