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Control of an oscillating water column wave energy converter based on dielectric elastomer generator

机译:基于介电弹性体发生器的振荡水柱波能转换器控制

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摘要

This paper introduces a model-based control strategy for a wave energy converter (WEC) based on dielectric elastomer generators (DEGs), i.e. a device that can convert the energy of ocean waves into electricity by employing deformable elastomeric transducers with variable capacitance. The analysed system combines the concept of oscillating water column WEC with an inflated circular diaphragm DEG (ICD-DEG). The device features strongly nonlinear dynamics due to the ICD-DEG electro-hyperelastic response and the compressibility of the air volume comprised between the water column and the ICD-DEG, while the hydrodynamic loads can be approximated as linear. The optimal control solution that maximises the power extraction of the device is numerically investigated in the case of monochromatic waves over the typical frequency and amplitude ranges of sea waves. The more realistic case of panchromatic waves is also analysed through the implementation, in simulation environment, of a real-time controller. This regulator is based on a simple sub-optimal control logic that is deduced from the monochromatic case. The performance of the proposed control strategy is illustrated in comparison with unoptimised algorithms.
机译:本文介绍了基于介电弹性体发生器(DEGS)的波能转换器(WEC)的基于模型的控制策略,即通过采用具有可变电容的可变形的弹性体换能器,可以将海浪能量转换为电力的装置。分析的系统将振荡水柱WEC的概念与膨胀的圆形隔膜(ICD-DEG)相结合。该装置由于ICD-DEG电动超级弹性响应而具有强烈非线性动力学,并且在水柱和ICD-DE之间构成的空气量的可压缩性,而流体动力载荷可以近似为线性。在典型频率和幅度范围内的单色波的情况下,最大化装置的功率提取的最佳控制解决方案在海浪上的典型频率和幅度范围内进行了数量地研究。通过实时控制器的仿真环境在模拟环境中,还通过实施方式分析了全色波的更现实的案例。该调节器基于从单色外壳推导的简单次优控制逻辑。与未优化的算法相比说明了所提出的控制策略的性能。

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