Wave Energy Power Take-off Validation with a Hydraulicly Actuated Rotary Dynamometer and a Bi-directional High-power DC Supply

Casey Nichols, Scott Lambert, Rebecca Fao, Robert Raye
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Abstract

There are many organizations working towards the commercialization of wave energy converter technologies and are advancing their designs through the technology readiness levels (TRLs). A critical step before the field deployment of prototype wave energy converters is the validation of the subsystems and components that are contained in the wave energy converter through laboratory testing and performance characterization. In 2021, the National Renewable Energy Laboratory (NREL) developed and demonstrated a system for testing power takeoffs (PTO) with a low-speed, high-torque dynamometer and a grid-tied high-power DC power source and sink before field deployment. The hydraulic dynamometer allows for the simulation of PTO actuation from wave motion and is capable of a wide range of wave periods and heights which are represented as various speeds and torques from the dynamometer. The high-power bidirectional power supply allows for hardware in the loop and controller in the loop testing to be conducted on WEC power electronics. This presentation was made to describe the methods used by NREL research staff to test all components and sub-systems in the PTO of a novel wave energy converter before field deployment.
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波浪能量起飞验证与液压驱动的旋转测功机和双向大功率直流电源
有许多组织致力于波浪能转换器技术的商业化,并正在通过技术准备水平(trl)推进他们的设计。在现场部署原型波能转换器之前的一个关键步骤是通过实验室测试和性能表征对波能转换器中包含的子系统和组件进行验证。2021年,国家可再生能源实验室(NREL)开发并演示了一种系统,用于在现场部署之前测试功率起飞(PTO),该系统具有低速,高扭矩测力仪和并网大功率直流电源和接收器。水力测力计可以模拟由波浪运动引起的PTO驱动,并且能够测量大范围的波浪周期和高度,这些波浪周期和高度表示为来自测力计的各种速度和扭矩。大功率双向电源允许硬件在环路和控制器在环路测试进行WEC电力电子。本报告描述了NREL研究人员在现场部署前测试新型波能转换器PTO中所有组件和子系统的方法。
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Open Sea Trial of a Wave-Energy Converter at Tuticorin Port – Challenges comprehensive assessment tool for low-TRL current energy converters Wave energy communication and social opposition Choosing wave energy devices for community-led marine energy development Tidal turbulence in medium depth water, primarily a model study
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