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Research on charging/discharging control strategy of battery-super capacitor hybrid energy storage system in photovoltaic system

机译:光伏系统中电池-超级电容器混合储能系统的充放电控制策略研究

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The power of photovoltaic (PV) system is greatly influenced by the natural environment factors, contributing to poor power supply reliability and voltage quality, while energy storage system can solve this problem effectively. Hybrid energy storage system combines the characteristics of the battery with larger capacity, medium power and fewer charge/ discharge times and the super capacitor with the characteristics of larger power density, smaller capacity and long cycling life, realizing complementary advantages of battery and super capacitor in operation. The storage system is controlled by power electrical converters to charge or discharge in harmony, which guarantees the quality of the PV energy, improves the overall performance of the energy storage system, extends the operation life of the energy storage system and reduces the costs of PV power. The paper adopts double BUCK- BOOST DC/DC converters to form a power bi-directional power transmission control circuit of hybrid energy storage system. The circuit controls the charging and discharging operation of battery and super capacitor orderly, and realizes the high-quality control of DC bus voltage of PV system.
机译:光伏(PV)系统的功率受到自然环境因素的极大影响,导致供电可靠性和电压质量较差,而储能系统可以有效地解决这一问题。混合动力储能系统结合了电池容量大,功率中等,充放电次数少的特点,以及超级电容器的功率密度大,容量小,循环寿命长的特点,实现了电池与超级电容器的互补优势。手术。储能系统由电力变流器控制,以协调充电或放电,从而保证了光伏能源的质量,提高了储能系统的整体性能,延长了储能系统的使用寿命并降低了光伏成本力量。本文采用双BUCK-BOOST DC / DC转换器构成混合储能系统的功率双向功率传输控制电路。该电路有序地控制电池和超级电容器的充放电操作,实现了光伏系统直流母线电压的高质量控制。

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