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Forced Commutated Controlled Series Capacitor Rectifier for More Electric Aircraft

机译:适用于更多电动飞机的强制换向控制串联电容器整流器

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Rising power demands in more electrical aircraft (MEA) put power converters for commercial airplanes under increasing pressure to fulfill current harmonic distortion regulations as specified, for example, in DO-160G. Today, the implementation of filters is seen as an effective tool for dealing with harmonics; however, their increased weight and volume are not welcomed in the aerospace industry. This paper proposes a circuit, named forced commutation controlled series capacitor (FCSC-rectifier), which is able to maintain low individual harmonic current levels without the need for filter components. The FCSC-rectifier includes a variable capacitive line reactance that interacts in a controlled manner with the inductive line impedance. The result is that the converter input current is nearly purely sinusoidal with a power factor of almost unity. The FCSC-rectifier is to be used for stand-alone variable-voltage, variable-frequency generation systems and can, therefore, power the full authority digital electronic control system (FADEC) in an MEA. This paper shows that the FCSC-rectifier can maintain a high power factor and acceptable current harmonic levels without the use of filters, despite large voltage and frequency variations. A full description of the circuit modes of operation is presented in this paper together with simulation results showing circuit performance characteristics over a range of voltages and frequencies. Results are experimentally verified using a 1-kW test circuit.
机译:越来越多的电动飞机(MEA)中不断增长的功率需求使商用飞机的功率转换器承受越来越大的压力,以满足DO-160G中规定的电流谐波失真规定。如今,滤波器的实施已被视为处理谐波的有效工具。但是,它们增加的重量和体积在航空航天工业中并不受欢迎。本文提出了一种名为强制换向控制串联电容器(FCSC整流器)的电路,该电路能够保持较低的单个谐波电流水平,而无需滤波器组件。 FCSC整流器包括可变电容性电抗,该电容性电抗以受控方式与电感性线路阻抗相互作用。结果是转换器输入电流几乎是正弦波,功率因数几乎为1。 FCSC整流器将用于独立的可变电压,可变频率发电系统,因此可以为MEA中的全权限数字电子控制系统(FADEC)供电。本文表明,尽管电压和频率变化很大,FCSC整流器仍可以在不使用滤波器的情况下保持较高的功率因数和可接受的电流谐波水平。本文对电路的工作模式进行了全面描述,并给出了在一定电压和频率范围内显示电路性能特征的仿真结果。使用1kW测试电路对结果进行实验验证。

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