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Altitude Optimization of Airborne Wind Energy Systems via Switched Extremum Seeking—Design, Analysis, and Economic Assessment

机译:通过切换极值搜索优化机载风能系统的高度—设计,分析和经济评估

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This paper applies a Lyapunov-based switched extremum seeking (LSES) control algorithm to the application of altitude optimization of airborne wind energy systems. We perform an economic analysis to evaluate the effectiveness of the control scheme. Finding the altitude with the highest energy yield requires energy to be consumed in the search for this optimal altitude. The simultaneous desires to optimize altitude and minimize control energy consumption are balanced in this paper through a variant of ES control, where the periodic perturbation signal is reduced when convergence upon an optimal altitude is detected. The signal is reinstated when the wind speed begins to deviate from its instantaneous optimal value. Because the wind shear profile (wind speed versus altitude) is subject to continual variations, this application represents a challenging case study in LSES control. Using real wind shear data acquired over a 25-day period, the results presented in this paper show that the LSES controller is successful in significantly increasing the net energy production over fixed-altitude and standard ES strategies. The economic advantage of the approach is illustrated through a comparison of achievable wind energy penetration with and without LSES-based altitude optimization in place, using real load demand data.
机译:本文将基于Lyapunov的开关极值搜索(LSES)控制算法应用于机载风能系统的高度优化应用。我们进行经济分析以评估控制方案的有效性。寻找具有最高能量产量的海拔高度需要在寻找该最佳海拔高度时消耗能量。在本文中,通过优化的ES控制平衡了优化海拔高度和最小化控制能量消耗的同时需求,当检测到最佳海拔高度收敛时,周期性扰动信号会减少。当风速开始偏离其瞬时最佳值时,该信号将恢复。由于风切变曲线(风速与海拔高度)会不断变化,因此该应用代表了LSES控制中具有挑战性的案例研究。使用在25天的时间内获取的实际风切变数据,本文显示的结果表明,LSES控制器成功地在固定高度和标准ES策略下显着提高了净能源产量。通过比较使用实际负荷需求数据在有和没有基于LSES的高度优化的情况下可实现的风能渗透,可以说明该方法的经济优势。

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