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The Solar Cells and the Battery Charger System Using the Fast and Precise Analog Maximum Power Point Tracking Circuits

机译:使用快速精确的模拟最大功率点跟踪电路的太阳能电池和电池充电器系统

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We propose a simple, fast and precise power calculation circuit for photovoltaic (PV) power systems. The power is calculated according to the principle that the integration of the PV output current over the time interval proportional to the PV output voltage becomes the power. This power calculation circuit is realized using simple analog circuits; neither a microprocessor nor a DSP is necessary to perform the function of Maximum Power Point Tracker (MPPT). As the calculated result at the output of the power calculation circuit becomes the analog voltage, a power comparison between the previous result and the current result is easily done using analog comparators where the previous result is sampled-andheld. Using the comparison result, the duty ratio of the boost converter is controlled to find the maximum power point in the PV output voltage range by adopting the hill-climbing perturb and observe (P&O) method. The prototype of the PV power system was circuit-designed and laid out using a 0.18μm CMOS IC process. The SPICE circuit simulation results indicated that the PV power calculation achieved within ±2% error for the PV output power from 50 mW to 300 mW, and ±5% for the PV output power from 10 mW to 350 mW. The operation of the whole power system was verified in a transient simulation by applying the current step from the current source of the equivalent PV-cell circuit. The result shows convergence to the maximum power point when the PV output currents are 100 mA, 300 mA and 500 mA with a 50-Ω load resistor at the output of the boost DC-DC converter.
机译:我们提出了一种用于光伏(PV)电力系统的简单,快速和精确的功率计算电路。功率是根据以下原理计算的:在与PV输出电压成比例的时间间隔内,PV输出电流的积分成为功率。该功率计算电路是通过简单的模拟电路实现的。微处理器和DSP都不需要执行最大功率点跟踪器(MPPT)的功能。由于功率计算电路输出端的计算结果变为模拟电压,因此可以使用模拟比较器轻松地进行先前结果与当前结果之间的功率比较,在该比较器中采样并保留先前的结果。使用比较结果,通过采用爬山扰动观察法(P&O),控制升压转换器的占空比,以找到PV输出电压范围内的最大功率点。光伏电源系统的原型经过电路设计,并使用0.18μmCMOS IC工艺进行布局。 SPICE电路仿真结果表明,对于50 mW至300 mW的PV输出功率,PV功率计算的误差在±2%以内,而10 mW至350 mW的PV输出功率的误差为±5%。通过应用等效PV电池电路电流源的电流阶跃,在瞬态仿真中验证了整个电源系统的运行。结果表明,在升压DC-DC转换器的输出端使用50Ω负载电阻的PV输出电流分别为100 mA,300 mA和500 mA时,收敛到最大功率点。

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