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Dynamic modeling and efficiency analysis of the scroll expander generator system for compressed air energy storage

机译:用于压缩空气储能的涡旋膨胀机发电机系统的动态建模和效率分析

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Reliable and accurate models are urgently needed for research on the control strategies to promote the energy conversion efficiency in compress air energy storage (CAES) system. This paper mainly studies expansion and power generation, which is called the scroll expander generator system with the permanent magnet synchronous generator (PMSG) using the rectifier and buck circuit. Considering influence of air leakage, the scroll expander model is established based on the change of chambers volume, air mass and pressure. A steady model of generator is described with the duty ratio of buck chopper and speed. The control strategies including valve and Buck chopper controller are adopted to quickly track the optimized speed and keep the load voltage constant. The experiment and simulation study validated the model and proved that the proposed control strategies can operate effectively on the variable working conditions. Experiment results point out that the optimized working speed is corresponding with the minimum air consumed power, instead of the maximum efficiency of scroll expander.
机译:迫切需要可靠,准确的模型来研究控制策略,以提高压缩空气储能(CAES)系统的能量转换效率。本文主要研究膨胀和发电,即所谓的涡旋膨胀发电机系统,该系统采用带有整流器和降压电路的永磁同步发电机(PMSG)。考虑到漏气的影响,根据腔室容积,空气质量和压力的变化建立涡旋膨胀机模型。用降压斩波器的占空比和转速描述了发电机的稳态模型。采用包括阀和降压斩波控制器在内的控制策略,以快速跟踪优化速度并保持负载电压恒定。实验和仿真研究验证了该模型,并证明了所提出的控制策略可以在变化的工作条件下有效运行。实验结果表明,优化的工作速度与最小的空气消耗功率相对应,而不是涡旋膨胀机的最大效率。

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