首页> 外文期刊>Journal of Dynamic Systems, Measurement, and Control >Stability of Wind Turbine Switching Control in an Integrated Wind Turbine and Rechargeable Battery System: A Common Quadratic Lyapunov Function Approach
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Stability of Wind Turbine Switching Control in an Integrated Wind Turbine and Rechargeable Battery System: A Common Quadratic Lyapunov Function Approach

机译:集成式风力涡轮机和可充电电池系统中风力涡轮机切换控制的稳定性:常见的二次Lyapunov函数方法

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摘要

The power generated by wind turbines varies due to variations in the wind speed. A pack of rechargeable batteries could be used as a reserve power source to alleviate the intermittency in the wind turbine power. An integrated wind turbine and battery storage system is constructed where the wind turbine is electrically connected to a rechargeable battery system. Such a system can operate in two modes depending on the wind speed, power demand, and battery limit. The switching conditions for the wind turbine to operate in multi-input, single-output and single-input, single-output control mode are discussed. Linearized approximations of the closed loop wind turbine system are derived in order to analyze the switching stability between control modes. Common quadratic Lyapunov function (CQLF) is established for both control modes to prove the system stability. Simulation results demonstrating system stability are also presented.
机译:风力涡轮机产生的功率由于风速的变化而变化。一组可充电电池可以用作备用电源,以减轻风力涡轮机电源的间歇性。构建了集成的风力涡轮机和电池存储系统,其中,风力涡轮机电连接至可充电电池系统。这样的系统可以根据风速,功率需求和电池极限以两种模式运行。讨论了风力涡轮机在多输入,单输出和单输入,单输出控制模式下运行的切换条件。为了分析控制模式之间的切换稳定性,得出了闭环风力涡轮机系统的线性近似值。建立两种控制模式的通用二次Lyapunov函数(CQLF),以证明系统的稳定性。仿真结果表明了系统的稳定性。

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