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A Review of Wave-to-Wire Models for Wave Energy Converters

机译:波能转换器的波线模型综述

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Control of wave energy converters (WECs) has been very often limited to hydrodynamic control to absorb the maximum energy possible from ocean waves. This generally ignores or significantly simplifies the performance of real power take-off (PTO) systems. However, including all the required dynamics and constraints in the control problem may considerably vary the control strategy and the power output. Therefore, this paper considers the incorporation into the model of all the conversion stages from ocean waves to the electricity network, referred to as wave-to-wire (W2W) models, and identifies the necessary components and their dynamics and constraints, including grid constraints. In addition, the paper identifies different control inputs for the different components of the PTO system and how these inputs are articulated to the dynamics of the system. Examples of pneumatic, hydraulic, mechanical or magnetic transmission systems driving a rotary electrical generator, and linear electric generators are provided.
机译:波能转换器(WEC)的控制通常仅限于流体动力学控制,以吸收海浪中可能的最大能量。通常,这会忽略或大大简化有功输出(PTO)系统的性能。但是,在控制问题中包括所有必需的动力学和约束条件可能会大大改变控制策略和功率输出。因此,本文考虑将从海浪到电网的所有转换阶段纳入模型,称为波到线(W2W)模型,并确定必要的组件及其动力学和约束,包括电网约束。此外,本文还针对PTO系统的不同组件标识了不同的控制输入,以及如何将这些输入与系统的动力学联系起来。提供了驱动旋转发电机的气动,液压,机械或磁传动系统和线性发电机的示例。

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