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Thin Film Solar Charge Controller: A Research Paper for Commercialization of Thin Film Solar Cell

机译:薄膜太阳能电荷控制器:薄膜太阳能电池商业化研究论文

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Solar Home System comprise with Solar PV, battery, and solar charge controller. Solar panels convert sunlight energy into electric energy by an electro-chemical process called photovoltaic process. Battery store electrical energy throws chemical reaction between acid and electrode. During discharge, stored chemical energy convert into electrical energy is then use for illumination lamp and running others electrical appliances. Most of cases solar energy consumer use solar energy at evening hours, but it is available in day time. So, it is required to store solar energy into battery. Each battery has certain limit of capacity. Battery lifetime reduces due to overcharging and deep discharging. As battery is very expensive component of solar home system. So, it is essential to protect from over charging and deep discharging. In this case charge controller plays a vital role to protect this battery. A solar charge controller, or charge regulator is similar to the voltage regulator. It regulates the voltage and current coming from the solar panels and going to the battery. Most of batteries are fully charged at 14 to 14.5 volts. On the other hand batteries life time drastically reduces due to discharge over the level of 70 – 80% DOD; at this discharge level the battery voltage normally goes down to 11.5±0.2 volts. The aim of this work is to study design and implementation a thin film solar charge controller for commercialization the thin film solar system. In Bangladesh, all supplier has involved with mono-crystalline solar and poly-crystalline solar, but no one deal with thin film solar system; due to lack of appropriate solar charge controller for solar home system (SHS). Thin film solar system is cheapest than other solar system and its installation accessories are obtainable in the local market to purchase in easy approach.
机译:太阳能家用系统包括太阳能PV,电池和太阳能控制器。太阳能电池板通过称为光伏过程的电化学过程将太阳光能转换为电能。电池存储电能引发酸和电极之间的化学反应。在放电期间,存储的化学能转化为电能,然后用于照明灯和运行其他电器。大多数情况下,太阳能消费者在晚上使用太阳能,但白天可以使用。因此,需要将太阳能存储到电池中。每个电池都有一定的容量限制。电池寿命会因过度充电和深度放电而缩短。由于电池是太阳能家用系统的非常昂贵的组件。因此,必须防止过度充电和深度放电。在这种情况下,充电控制器在保护电池方面起着至关重要的作用。太阳能控制器或电荷调节器类似于电压调节器。它调节从太阳能电池板到电池的电压和电流。大多数电池在14至14.5伏特时充满电。另一方面,由于放电超过70 – 80%DOD的水平,电池的使用寿命大大缩短。在此放电水平下,电池电压通常会降至11.5±0.2伏。这项工作的目的是研究将薄膜太阳能系统商业化的薄膜太阳能电荷控制器的设计和实现。在孟加拉国,所有供应商都参与了单晶太阳能和多晶太阳能,但没有人涉及薄膜太阳能系统。由于缺少适用于太阳能家用系统(SHS)的太阳能充电控制器。薄膜太阳能系统比其他太阳能系统最便宜,其安装配件可在本地市场上以简便的方式购买。

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