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Energy Storage Requirements for Near-Optimal Reactive Control of a Wave Energy Device

机译:波能装置近乎最佳反应控制的能量存储要求

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This paper investigates an approach to near-optimal real-time reactive control of wave energy devices based on time-domain up-wave surface elevation information. The paper first presents the overall approach required for such control, and recalls the need for future force and response information due to the causality of the radiation force and the non-causality of the exciting force (in relation to the wave profile at device centroid). The present approach is a realistic approximation based on linearized wave propagation and device dynamics models. For a predominantly heaving submerged point absorber in an approximately uni-directional incident wave field, the amount of instantaneous reactive power is compared with the instantaneous absorbed power. Although the net reactive energy is zero in the absence of actuator losses, the instantaneous reactive energy requirement for small devices in swell-dominated spectra may be significant. The time-domain calculations here confirm this and show that substantial amounts of energy may need to be exchanged with an external energy storage unit or the grid until sufficient energy has been absorbed.
机译:本文研究的方法,以基于时域上的波面仰角信息的波能的设备的接近最优的实时反应性控制。需要这种控制的纸张第一呈现的整体的方式,并回顾为未来的力和响应信息的需要,由于辐射力的因果关系和(在设备的质心相对于所述波轮廓)的激振力的非因果。本方法是基于线性化的波传播和设备动力学模型逼真近似。对于在大致单向入射波场主要为起伏浸没点吸收,瞬时无功功率的量与所述瞬时吸收功率进行比较。虽然净反应性能量为零在不存在致动器的损失,为小型设备在膨胀主导光谱的瞬时无功能量需求可以是显著。这里的时域计算证实这一点,并表明,能量的大量可能需要与外部能量存储单元或电网进行交换,直到足够的能量已经被吸收。

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