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首页> 外文期刊>IEEE Transactions on Power Systems >Modeling and Control of AWS-Based Wave Energy Conversion System Integrated Into Power Grid
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Modeling and Control of AWS-Based Wave Energy Conversion System Integrated Into Power Grid

机译:电网中基于AWS的波浪能转换系统的建模与控制

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摘要

In this paper, the model of Archimedes wave swing (AWS) based wave energy conversion (WEC) system is proposed where a new coordinate transformation for the linear permanent magnet generator between the abc frame of reference and the dq0 frame of reference is proposed and the model of the LPMG in dq0 reference frame suitable for power system dynamic and stability analysis is derived for the first time. Since the output power and the induced voltage both vary, full-scale back-to-back converters are employed to connect the WEC to the power grid in order to maintain a constant active power and terminal voltage at the system side. The controllers for the generator side converter and the grid side converter of the back-to-back converters are also developed. Simulations are performed, when WEC operates under conditions such as no-load, supplying an isolated $R$-$C$ load and integration with a power system, to simulate the dynamics of the WEC and verify the effectiveness of the model derived and the controllers developed. Comparison between the dynamic responses simulated and those obtained in the field test demonstrates that using the proposed dq0 model, the dynamics of the WEC system can be simulated properly. Using the generator side converter controller, the maximum power can be extracted from the wave while the loss in the LPMG can be minimized. Furthermore, the WEC can keep the output power at the power grid converter side constant and maintain the terminal voltage constant with the grid side converter controller. These are the desired features for the WEC to operate in parallel with the power grid. The effectiveness of the controller proposed is also validated under small disturbance.
机译:本文提出了一种基于阿基米德波动(AWS)的波能转换(WEC)系统模型,其中提出了一种新的线性永磁发电机在参考abc帧与dq0参考帧之间的坐标变换,并且首次推导了dq0参考系中适用于电力系统动态和稳定性分析的LPMG模型。由于输出功率和感应电压都变化,因此采用了全尺寸背靠背转换器将WEC连接到电网,以便在系统侧保持恒定的有功功率和端电压。还开发了背靠背转换器的发电机侧转换器和电网侧转换器的控制器。当WEC在空载,提供隔离的$ R $-$ C $负载并与电力系统集成等条件下运行时,将执行仿真,以模拟WEC的动力学并验证所推导模型和模型的有效性。控制器开发。通过模拟动态响应和现场测试获得的动态响应进行比较,结果表明,使用建议的dq0模型,可以正确地模拟WEC系统的动态。使用发电机侧变流器控制器,可以从电波中提取最大功率,同时可以将LPMG中的损耗降至最低。此外,WEC可以使电网转换器侧的输出功率保持恒定,并通过电网侧转换器控制器使端子电压保持恒定。这些是WEC与电网并行运行所需的功能。所提出的控制器的有效性也在小干扰下得到了验证。

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