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Optimization of charge parameters for lead-acid batteries used in photovoltaic systems

机译:光伏系统中铅酸蓄电池充电参数的优化

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The lead-acid batteries used in the photovoltaic (PV) systems are subjected to penalizing operating conditions. The recharge is badly controlled since it depends on the weather conditions. These particular operating conditions induce unusual degradations of the active material compared to more traditional applications like SLI batteries. Consequently, when used in PV applications, lead-acid batteries show a shorter lifetime than they could reach. The management of the recharge of the photovoltaic lead-acid batteries is a major issue for the optimization of their lifetime. Today, complex methods of end of recharge, such as complements of recharge using current pulses, are increasingly widespread. Many parameters can be adjusted (frequency, duty cycle, voltage threshold for beginning the pulsed phase...) but no reliable data are available in the literature. The study that follows deals with the experimental optimization of these various parameters (under well defined operating conditions). In the same time, a specific software has been developed in our laboratory and helps to understand why these pulses increase the charge acceptance of the lead-acid battery.
机译:光伏(PV)系统中使用的铅酸电池要经受严酷的操作条件。补给受到严格控制,因为它取决于天气状况。与更传统的应用(例如SLI电池)相比,这些特殊的操作条件会引起活性材料的异常降解。因此,当用于光伏应用中时,铅酸电池的寿命短于其可达到的寿命。光伏铅酸电池的充电管理是优化其寿命的主要问题。如今,复杂的充电结束方法(例如使用电流脉冲的补充充电)日益普及。可以调整许多参数(频率,占空比,开始脉冲相位的电压阈值...),但是文献中没有可靠的数据。接下来的研究涉及这些各种参数的实验优化(在明确定义的工作条件下)。同时,我们的实验室已开发出一种特殊的软件,可帮助您理解为什么这些脉冲会增加铅酸电池的充电接受度。

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