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Wave farm flicker severity: Comparative analysis and solutions

机译:波场闪烁严重性:比较分析和解决方案

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This paper proposes a flicker severity study for Wave Energy Converter farms. The flicker severity is introduced and the reason why it is an important constraint for a wave farm is explained. A new representation called intrinsic flicker severity is introduced which describes the flicker severity independently of the grid. The influence of device type, its control and the sea-state on average production, flicker severity and on the ratio between flicker and production are studied with three types of devices: an Oscillating Water Column and two Direct Wave Energy Converters (two point absorbers: a Heaving Buoy and the SEAREV). The influence of the size and the placement of each unit in the wave farm is presented with a farm-unit flicker ratio, compared with the square-root of unit hypothesis (noise behavior), as a function of wave direction by taking into account wave direction dispersion. Finally, solutions are presented to reduce the flicker produced to comply with grid code requirements in order to allow grid integration of wave farms. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文提出了一项针对波动能量转换器场的闪烁严重性研究。介绍了闪烁的严重性,并解释了它对波浪场构成重要约束的原因。引入了一种称为固有闪烁严重性的新表示形式,它独立于网格描述了闪烁严重性。使用以下三种类型的设备研究了设备类型,其控制和海洋状况对平均产量,闪烁严重性以及闪烁与产量之间的比率的影响:振荡水柱和两个直接波能量转换器(两点吸收器:浮标和SEAREV)。波浪场中每个单元的大小和位置的影响以场单元闪烁率表示,与单元假设(噪声行为)的平方根相比,考虑了波浪,它是波浪方向的函数方向分散。最后,提出了解决方案,以减少产生的闪烁,以符合电网规范要求,以允许波场的电网集成。 (C)2016 Elsevier Ltd.保留所有权利。

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