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Analysis of an irradiance adaptative PV based battery floating charger

机译:基于辐照度自适应光伏电池浮充充电器的分析

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In a system composed of a PV cell, a converter and a resistive load, the MPPT techniques are done on the output of the PV cell and not on the load level. This study considers a battery as load and considers its state of charge and take into consideration that empty battery need more current than a fully charged one and therefore the MPPT is not useful in this case, but a smart system able to manage the battery current based on different irradiance levels. For a fixed voltage output of the DC/DC converter, the current risks to reach its maximum when the battery is totally empty which is caused by the big difference of potential between the converter and the battery voltages. Whereas in a fully charged battery, the difference of potential between the charger and the battery is zero and therefore no need to search for the MPP in this case. The study treats first the modeling of an open loop DC/DC buck converter and then a modeling of the converter in a closed loop with a PID controller. Also, it proposes the use of a microcontroller with three different circuit designs and algorithms to manage the current and the voltage together depending on the battery state of charge. The final design is called a PV based battery floating charger that increase the lifetime of the battery by controlling the converter output voltage with respect to the consumed current, the available PV current and the converter Mosfet tolerated current.
机译:在由光伏电池,转换器和电阻负载组成的系统中,MPPT技术是在光伏电池的输出上完成的,而不是在负载水平上完成的。这项研究将电池视为负载并考虑其充电状态,并考虑到空电池比充满电的电池需要更多的电流,因此MPPT在这种情况下没有用,而是能够基于电池来管理电池电流的智能系统在不同的辐照度水平上。对于DC / DC转换器的固定电压输出,当电池电量完全耗尽时,电流有可能达到最大值,这是由于转换器和电池电压之间的电位差较大所致。而在充满电的电池中,充电器和电池之间的电位差为零,因此在这种情况下无需搜索MPP。该研究首先处理开环DC / DC降压转换器的建模,然后处理具有PID控制器的闭环转换器的建模。此外,它建议使用具有三种不同电路设计和算法的微控制器来根据电池的充电状态一起管理电流和电压。最终设计称为基于PV的电池浮动充电器,它通过根据消耗的电流,可用的PV电流和转换器的Mosfet耐受电流来控制转换器的输出电压,从而延长了电池的使用寿命。

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