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Predictive control method for wind power regulation via a double-screw expander-generator and supercapacitor

机译:通过双螺杆膨胀发电机和超级电容器进行风能调节的预测控制方法

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摘要

A modified hybrid energy storage system (HESS) consisting of a double-screw expander-generator (DSEG) and a supercapacitor is proposed here to accommodate wind power fluctuations. The dynamic matrix control (DMC) algorithm is applied to improve the operating performance of the HESS. The reference track of the exchanging active power of the supercapacitor is pre-planned based on wind turbine output, load demand, and the predictive DSEG output. Meanwhile, a linearisation and state of charge (SOC) management strategy for the supercapacitor is proposed to avoid excessive charging-discharging. During the predictive control process, the DSEG input is continually adjusted by means of rolling optimisation combined with feedback correction until the output of the HESS approximates its expectation. Case studies show that the supercapacitor efficiently eliminates the power hysteresis of the DSEG and the DSEG eliminates the intrinsic error caused by the linearisation of the supercapacitor output in turn, indicating that the control effect of the HESS is improved.
机译:在此提出了一种改进的混合动力储能系统(HESS),该系统由双螺杆膨胀发电机(DSEG)和超级电容器组成,以适应风能波动。应用动态矩阵控制(DMC)算法来提高HESS的运行性能。超级电容器交换有功功率的参考轨迹是根据风力涡轮机输出,负载需求和DSEG预测输出预先规划的。同时,提出了一种用于超级电容器的线性化和充电状态(SOC)管理策略,以避免过度的充放电。在预测控制过程中,通过滚动优化和反馈校正相结合的方式不断调整DSEG输入,直到HESS的输出接近其期望值为止。案例研究表明,超级电容器有效消除了DSEG的功率滞后,而DSEG消除了由超级电容器输出线性化引起的固有误差,这表明HESS的控制效果得到了改善。

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