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Design considerations and performance evaluation of outdoor PV battery chargers

机译:户外光伏电池充电器的设计注意事项和性能评估

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Two main challenges are encountered in photovoltaic (PV) based battery chargers, namely, the variable input power and the fluctuating temperature. As a result, traditional charging techniques that rely only on the terminal measurements such as the current, voltage or temperature are not reliable in those chargers. Furthermore, relying only on the terminal measurements without other indirect measurements can result in terminating the charge before the battery is truly fully charged, which has several drawbacks such as reducing the usable capacity and possibly leading to memory effect in nickel-based batteries, or overcharging the battery which can lead the battery to prematurely reaching its end-of-service. This paper presents design considerations and evaluates the performance of PV chargers used to charge major battery chemistries including nickel cadmium (NiCd), nickel-metal-hydride (NiMH), lithium-ion (Li-ion) and sealed lead-acid batteries at real operating conditions. (C) 2014 Elsevier Ltd. All rights reserved.
机译:在基于光伏(PV)的电池充电器中遇到两个主要挑战,即可变输入功率和温度波动。结果,仅依赖于诸如电流,电压或温度之类的终端测量的传统充电技术在那些充电器中是不可靠的。此外,仅依靠端子测量而不进行其他间接测量可能导致在电池真正充满电之前终止充电,这有一些缺点,例如,降低了可用容量并可能导致镍基电池的记忆效应或过度充电可能导致电池过早失效的电池。本文介绍了设计注意事项,并评估了用于为主要电池化学物质充电的PV充电器的实际性能,包括镍镉(NiCd),镍金属氢化物(NiMH),锂离子(Li-ion)和密封铅酸电池运行条件。 (C)2014 Elsevier Ltd.保留所有权利。

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