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首页> 外文期刊>Sustainable Energy, IEEE Transactions on >Filter Design for Cable Overvoltage and Power Loss Minimization in a Tidal Energy System With Onshore Converters
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Filter Design for Cable Overvoltage and Power Loss Minimization in a Tidal Energy System With Onshore Converters

机译:具有岸上转换器的潮汐能系统中的电缆过压和功率损耗最小化滤波器设计

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By moving the back-to-back acdcac converters in a tidal current conversion system (TCCS) onshore, maintenance requirements and cost are reduced significantly. This is because underwater components are not easily accessible and operate in a harsh environment. In addition to increased maintainability, the concept of long-distance controls offers maximum power capture from the tidal currents in the same way that a converter in the nacelle would offer. However, a number of challenges are associated with the concept of controlling electrical machines through long cables, which include electromagnetic traveling waves in the cables and system resonance. These phenomena can induce overvoltages at the generator terminals which can lead to system failure and high harmonics that can induce extra power losses. The major contribution of this paper is a new method of filter design for systems with long-distance controls and for minimization of system power loss. The proposed method is validated by developing a full resource-to-grid TCCS in MATLAB/Simulink. Simulation results show that using the proposed method, overvoltage mitigation can be achieved in the same way as literature-based filters, but at the same time, minimize the total system losses. The results from the analysis can be used to optimize tidal energy conversion systems with a similar electrical configuration.
机译:通过在陆上潮流转换系统(TCCS)中将背对背acdcac转换器移动到岸上,可大大降低维护要求和成本。这是因为水下组件不容易接近,并且无法在恶劣的环境中运行。除了提高可维护性之外,远程控制的概念还提供了与机舱中的转换器所提供的方式相同的从潮流中捕获最大功率的功能。但是,通过长电缆控制电机的概念面临许多挑战,其中包括电缆中的电磁行波和系统共振。这些现象会在发电机端子上引起过电压,从而导致系统故障和高谐波,从而导致额外的功率损耗。本文的主要贡献是一种用于具有长距离控制的系统和最小化系统功耗的滤波器设计新方法。通过在MATLAB / Simulink中开发完整的资源到网格TCCS来验证所提出的方法。仿真结果表明,使用本文提出的方法,可以以与基于文献的滤波器相同的方式来实现过压缓解,但是同时,可以将总系统损耗降至最低。分析的结果可用于优化具有类似电气配置的潮汐能转换系统。

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