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首页> 外文期刊>Trends in Ecology & Evolution >Research on Multi-Physical Fields of High-Power PMSM/G Used for FESS During the Process of Controllable Charging and Uncontrollable Discharging
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Research on Multi-Physical Fields of High-Power PMSM/G Used for FESS During the Process of Controllable Charging and Uncontrollable Discharging

机译:可控充电过程中使用的高功率PMSM / G的多物理领域的研究及无法控制放电

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摘要

Flywheel energy storage system (FESS) has been widely used in many fields, benefiting from the characteristics of fast charging, high energy storage density, and clean energy. Uncontrollable discharging system can be used in some special occasions which doesn't have strict requirements on the power quality, such as electric heaters, emergency power supplies, etc. Taking a charging and discharging (C&D) system of 200 kW 15000 rpm high-speed Permanent Magnet Synchronous Motor/Generator (PMSM/G) used for FESS as an example, field-circuit coupling calculation model of PMSM/G during the process of controllable charging and uncontrollable discharging is established. And then the relationships between speed and current-voltage during charging process is calculated. A variable load calculation method based on transient electromagnetic field during the process of uncontrollable discharging is presented, and the eddy current field and transient temperature field of rotor sleeve and permanent magnets during the process of C&D under different loads are also calculated. The output characteristic curves of FESS under condition of constant loads during the process of uncontrollable discharging is drawn. The conjugate analysis method of rotor multi-physical fields is proposed to study the relationships between rotor sleeve stress and eddy current distribution, and the optimized sleeve thickness for high-speed PMSM/G is also presented. Also, a solution is presented to solve the temperature and sleeve fracture problems caused by eddy current under high-speed operation. This contents of the paper can provide references for efficient and reliable design of PMSM/G under extreme conditions used for FESS.
机译:飞轮储能系统(FESS)已广泛应用于许多领域,受益于快速充电,高能量存储密度和清洁能量的特点。无法控制的放电系统可以在某些特殊场合使用,这对电力质量没有严格的要求,例如电加热器,应急电源等。采用200 kW 15000转高速的充电和放电(C&d)系统用于FES的永磁同步电动机/发电机(PMSM / G)作为示例,建立了可控充电过程中PMSM / G的现场电路耦合计算模型和无法控制的放电。然后计算充电过程中速度和电流电压之间的关系。还计算了基于瞬态电磁场的可变载荷计算方法,并且还计算了不同负载下C&D过程中转子套筒和永磁体的涡流场和永磁体的涡流场和永磁体。绘制了在无法控制放电过程中恒定负载条件下的FES的输出特性曲线。提出了转子多物体场的共轭分析方法,以研究转子套筒应力和涡流分布之间的关系,并且还呈现了高速PMSM / G的优化套筒厚度。此外,提出了一种解决方案以解决高速操作下由涡流引起的温度和套筒断裂问题。本文的这种内容可以在用于FESS的极端条件下提供高效可靠地设计PMSM / G的参考。

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