纳米卫星电池充电系统

S. Kimura, M. Ramdhani, Edwar
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引用次数: 1

摘要

纳米卫星是一种重量小于10克的小型卫星。一种纳米卫星是1U立方体卫星,尺寸为(10×10×10)立方厘米。纳米卫星在绕地球运行时,有两个条件,即光照时间和日食时间。日食时间是卫星没有获得足够阳光的时间,而纳米卫星的主要能源是阳光。这个最终项目将设计一个纳米卫星电源,该电源带有电池充放电系统,使用电池充电器IC。IC电池充电器具有电源路径功能,可以确定在光照和日食期间卫星电源的电源来源。电池充电系统配备浮压功能,使电池保持在最大容量,温度监测,以保持电池温度和最小输入电压,以避免电压下降。放电系统具有电压保护功能,通过将偏置电流降低到<0.1 μA,使电池电压保持在安全水平。采用浮压、温度监测、最小输入电压和欠压保护。该系统有望提高效率并保持电池的使用寿命。该项目的结果是,当太阳能电池板只有一面暴露在阳光下时,电池的充电功率最低为1.05瓦,两面暴露时为2.52瓦,三面暴露时为4.74瓦。纳米卫星必须在能量最低时关闭其中一个模块。同时,纳米卫星在两个面板工作时可以节省1.37瓦,在三个面板工作时可以节省3.59瓦。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Battery Charging System For Nanosatellite
Nanosatellite is a small satellite weighing less than 10 g. One type of nanosatellite is a 1U CubeSat with a size (10×10×10) cm3. When orbiting the Earth, nanosatellites have two conditions, namely light time and eclipse time. Eclipse time is when the satellite does not get enough sunlight, while the primary energy resource of nanosatellite is sunlight. This final project will design a nanosatellite power supply with a battery charging and discharging system using a Battery charger IC. IC Battery charger has a power path feature that determines the power source of satellite power during light and eclipse times. The battery charging system is equipped with a float Voltage feature to keep the battery at its maximum capacity, temperature monitoring to maintain battery temperature and a minimum input Voltage to avoid Voltage drops. The discharge system features under Voltage protection to keep the battery Voltage at a safe level by reducing the bias current to <0.1 μA. by using float Voltage, temperature monitoring, minimum input Voltage and under Voltage protection. This system is expected to increase efficiency and keep the lifetime of the battery. The result of this project is that the battery can be charged with 1.05 Watt on minimum, where only one solar panel’s side is exposed to sunlight, 2.52 Watt when two sides are exposed, and 4.74 Watt when three sides are exposed to sunlight. Nanosatellite must turn off one of its modules when it’s minimum power. At the same time, nanosatellites can save 1.37 Watt when two panels work and 3.59 Watt when three panels work.
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