Design of a Switching Module for Electricity Supply from Solar to Grid by Sensing Light Intensity
Author:
Publisher
Springer International Publishing
Link
https://link.springer.com/content/pdf/10.1007/978-3-031-04851-7_2
Reference15 articles.
1. Baldonado, M., Chang, C.-C.K., Gravano, L., Paepcke, A.: The stanford digital library metadata architecture. Int. J. Digit. Libr. 1, 108–121 (1997)
2. Bhatti, A., Salam, Z., Ashique, R.H.: Electric vehicle charging using photovoltaic based microgrid for remote Islands. Energy Proc. 103, 213–218 (2016)
3. Wu, T., Zhang, H., Shang, L.: Optimal sizing of a grid-connected hybrid renewable energy systems considering hydroelectric storage. Energy Sources Part A: Recover. Util. Environ. Eff. 1–17 (2020)
4. Yakuphanoglu, F.,Tang, K.-H., Chao, K.-H., Chao, Y.-W., Chen, J.-P.: Design and implementation of a simulator for photovoltaic modules. Int. J. Photoenergy 368931 (2012)
5. Bhatti, A., Salam, Z.: A rule-based energy management scheme for uninterrupted electric vehicles charging at constant price using photovoltaic-grid system. Renew. Energy 125 (2018)
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