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Energy saving strategy on electric propulsion system integrated with doubly fed asynchronous motors

机译:双馈异步电动机集成电力推进系统的节能策略

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Electric propulsion system integrated with doubly-fed asynchronous motor contributes efficient characteristics and flexibility in operation. However, in perception of energy saving and full-scale speed variation, the conventional doubly fed asynchronous motor is limited by the ratings of power converters. Generally, the electrical machines are designed to attain maximum efficiency around the full load. To increase energy saving and operating speed range under lightly loaded condition, the proposed strategy injects a low voltage DC supply to the stator winding instead of full rated AC supply. Wherein the DC supply is obtained from the converter's DC-link instead of external source. The proposed system is mathematically modelled using Matlab/Simulink tool and implemented experimentally with a 2.2 kW doubly fed asynchronous motor. In addition to this, the comparative energy conservation analysis of an electric propulsion system (2 MW) with the proposed strategy is carried out as a case study.
机译:与双馈异步电动机集成的电力推进系统具有高效的特性和操作灵活性。然而,从节能和满量程速度变化的角度来看,传统的双馈异步电动机受到功率转换器额定值的限制。通常,电机被设计成在满负荷附近达到最大效率。为了增加轻载条件下的节能和运行速度范围,所提出的策略向定子绕组注入低压直流电源,而不是满额额定交流电源。其中直流电源是从转换器的直流母线而不是外部电源获得的。所提出的系统使用Matlab / Simulink工具进行数学建模,并通过2.2 kW双馈异步电动机进行实验实现。除此之外,还以案例研究的形式对电动推进系统(2 MW)的节能分析进行了比较。

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