Thermophotovoltaic emitter design with a hyper-heuristic custom optimizer enabled by deep learning surrogates
Author:
Funder
Basic Energy Sciences
National Science Foundation
U.S. Department of Energy
Office of Science
Publisher
Elsevier BV
Reference64 articles.
1. Thermophotovoltaics: Fundamentals, challenges and prospects;Daneshvar;Appl Energy,2015
2. Present efficiencies and future opportunities in thermophotovoltaics;Burger;Joule,2020
3. Radioisotope thermophotovoltaic generator design methods and performance estimates for space missions;Wang;J Propul Power,2020
4. A nanophotonic solar thermophotovoltaic device;Lenert;Nat Nanotechnol,2014
5. Ultra high temperature latent heat energy storage and thermophotovoltaic energy conversion;Datas;Energy,2016
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