Design and development of MPPT algorithm for high efficient DC-DC converter for solar energy system connected to grid

Patil S N, Prasad
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引用次数: 14

Abstract

Because of combustion of fossil fuels global warming caused by environmental problems, the raising prices of crude oils and natural gases. They promote continuous effort to improve energy system and its efficiency. There is a need to search for abundant and clean energy sources due to the depleted and increasing prices of oil. Solar energy acts as an alternative renewable energy source. Photovoltaic cells are used as renewable energy system. Photovoltaic (PV) cells can be used to generate dc voltages and given to DC-DC converter. DC-DC converter used is Buck boost type of converter. The converter output is given to battery to inverter and load. Buck boost converter gives constant output which will controlled by PWM controller and feedback control system. Feedback control system has compensation network with different types and parameters. Designing of converter gives constant output. A maximum power point tracking (MPPT) algorithm technique is needed to track the peak power to maximize the produced energy. The maximum power point in the power voltage graph is identified by an algorithm called as incremental conductance method. This algorithm will identify the suitable duty cycle ratio in which buck boost converter should operate to maximum point. The MPPT algorithm is vital in increasing the efficiency of the system. This output is given to battery though the H bridge inverter circuit. The ac output voltage is directly fed to low voltage grid though the PLL circuit. The control of PWM for converter, inverter, MPPT algorithm and PLL is controlled by using MICROCHIP dsPIC30F4011 DSP processor. The total experimentation is carried out and results of converter, inverter, grid control and MPPT characteristics are analyzed.
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并网太阳能系统高效DC-DC变换器的MPPT算法设计与开发
由于化石燃料的燃烧引起全球变暖的环境问题,原油和天然气价格的上涨。他们推动不断努力改善能源系统及其效率。由于石油的枯竭和价格的上涨,有必要寻找丰富和清洁的能源。太阳能是一种可替代的可再生能源。光伏电池被用作可再生能源系统。光伏(PV)电池可以产生直流电压并提供给dc - dc变换器。DC-DC变换器采用的是Buck升压型变换器。变换器输出给蓄电池、逆变器和负载。Buck升压变换器提供恒定输出,由PWM控制器和反馈控制系统控制。反馈控制系统具有不同类型和参数的补偿网络。变换器的设计使输出恒定。需要最大功率点跟踪(MPPT)算法技术来跟踪峰值功率,使发电量最大化。功率电压图中的最大功率点由一种称为增量电导法的算法确定。该算法将确定降压升压变换器工作到最大值的合适占空比。MPPT算法是提高系统效率的关键。该输出通过H桥逆变电路提供给电池。交流输出电压通过锁相环电路直接馈送到低压电网。采用MICROCHIP dsPIC30F4011 DSP处理器控制变换器、逆变器、MPPT算法和锁相环的PWM控制。进行了总体实验,分析了变流器、逆变器、电网控制和MPPT特性的实验结果。
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