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首页> 外文期刊>Analog Integrated Circuits and Signal Processing >CMOS integrated MPP tracker with analog power measurement at the PV converter input
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CMOS integrated MPP tracker with analog power measurement at the PV converter input

机译:CMOS集成MPP跟踪器,在PV转换器输入端具有模拟功率测量

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摘要

An integrated converter controller with maximum power point (MPP) regulation in 0.35 μm CMOS for photovoltaic (PV) applications is reported. The implemented MPP tracker bases on a perturb and observe algorithm and acquires the information concerning the power flow via an analog processing circuit which is connected at the switched mode converter input respectively the output of the attached PV string of nine cells. There the solar cell current is measured via a very low-ohmic shunt resistor of 1 mΩ and analogously multiplied with the cell voltage. As output the fabricated test chip directly generates a 530 kHz PWM signal for the external switched mode converter. Measurements show that under similar conditions analog MPP tracking of the converter input power improves the robustness with respect to settling times of the power path compared to those topologies at which the power is measured at the converter output. Between 0.4 and 7.5 A photocurrent the chip achieves tracking efficiencies better than 99.5% while the power consumption is only 750 μW and a very low chip area demand of 0.043 mm~2 for the MPP tracking core is achieved.
机译:据报道,在光伏(PV)应用中,集成转换器控制器具有0.35μmCMOS的最大功率点(MPP)调节。实施的MPP跟踪器基于扰动和观察算法,并通过模拟处理电路获取有关潮流的信息,该模拟处理电路分别连接在开关模式转换器的输入端和分别连接的九个电池串的输出端。在那里,通过一个非常低的1mΩ欧姆分流电阻来测量太阳能电池电流,并与电池电压相乘。输出的预制测试芯片直接为外部开关模式转换器生成530 kHz PWM信号。测量表明,在类似条件下,与在转换器输出端测量功率的拓扑相比,转换器输入功率的模拟MPP跟踪相对于功率路径的建立时间提高了鲁棒性。在0.4至7.5 A的光电流下,芯片实现的跟踪效率优于99.5%,而功耗仅为750μW,并且MPP跟踪内核的芯片面积需求非常低,仅为0.043 mm〜2。

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