摘要
Traditional compressed-refrigerant air conditioning systems consume substantial energy that may reduce the driving performance and cruising mileage of electric vehicles considerably. It is crucial to design a new climate control system, using a direct energy conversion principle, to further aid in the commercialization of modern electric vehicles. A solid state air conditioner model consisting on TECs (thermoelectric chips) as the load, DSSCs (dye sensitized solar cells) as the renewable energy source and high power LiBs (lithium-ion batteries) as an energy storage device are considered for a personal mobility vehicle. The power management between the main power net and the solid state air conditioner interface is designed with an outer proportional-integral controller and an inner passivity based current controller with a loss included model for perfect tracking. This model is intended to comprise thermal and electrical elements which can be tunable for performance benchmarking and optimization of a solid state air conditioning system. Dynamic performance simulations of the solid-state air conditioner are performed, alongside guidelines for feasibility.
| 原文 | English |
|---|---|
| 頁(從 - 到) | 633-641 |
| 頁數 | 9 |
| 期刊 | Energy |
| 卷 | 59 |
| DOIs | |
| 出版狀態 | Published - 15 9月 2013 |
UN SDG
此研究成果有助於以下永續發展目標
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Affordable and clean energy
指紋
深入研究「Feasibility study of a green energy powered thermoelectric chip based air conditioner for electric vehicles」主題。共同形成了獨特的指紋。引用此
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