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REAL TIME ESTIMATION AND PREDICTION OF WAVE EXCITATION FORCES ON A HEAVING BODY

机译:沉重体上波激发力的实时估计与预测

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Wave energy converters (WECs) face many technical challenges before becoming a cost-competitive source of renewable energy. The levelized cost of electricity could be decreased by implementing real-time control strategies to increase average power produced by a WEC. These control strategies typically require knowledge of the immediate future excitation force, caused by the waves. This paper presents a disturbance prediction methodology that is independent of the local wave climate and can be implemented on a wide range of devices. A time-domain model of a generic heaving WEC is developed with the Cummins equations. The model is simulated with measured water surface elevation data collected off the Oregon Coast. A simplified linear frequency-invariant state-space model is used in conjunction with a Kalman filter to estimate the current excitation force with measurements of the WEC's motion. Future excitation forces are then predicted multiple steps in the future with a recursive least squares filter. The results show this approach makes accurate predictions of excitation force over short time horizons (up to 15 seconds), but accurate predictions become infeasible for longer horizons.
机译:波能源转换器(WECS)在成为可再生能源的成本竞争力源之前面临许多技术挑战。通过实施实时控制策略来提高WEC生产的平均功率,可以降低电力调整性的电力成本。这些控制策略通常需要了解由波浪引起的即时激励力。本文介绍了一种独立于局部波气气候的干扰预测方法,可以在各种设备上实现。使用康明斯方程式开发了通用泛型WEC的时域模型。使用从俄勒冈海岸收集的测量水表面高度数据模拟模型。简化的线性频率不变状态空间模型与卡尔曼滤波器结合使用,以估计随着WEC运动的测量值的电流激励力。然后,将来未来的未来励磁力与递归最小二乘滤波器预测到未来的多个步骤。结果表明,这种方法在短时间视野(最多15秒)上的激发力准确预测,但对于更长的地平线,准确的预测变得不可行。

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