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Wireless power transfer with temperature monitoring interface for helicopter rotor blade ice protection

机译:用于直升机转子叶片冰保护温度监控界面的无线电力传输

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Traditional ice protection systems for helicopters convey electrical power from generators to blade heaters through flimsy carbon contacts embedded in "slipring" devices. However, the harsh vibratory environment combined with the high speed/current typically results in sparkling, powder and a very short life of sliprings themselves. In order to eliminate friction, the use of a rotary transformer assisted by power electronics is considered. For this purpose, a suitable transformer topology is investigated from first principles and paired with a resonant inverter. Preliminary finite element method analysis followed by experimental validation on a reduced scale transformer prototype show that a suitable full scale unit could transfer the necessary power to protect a medium class helicopter tail rotor, with a weight/size comparable to that of a legacy slipring but at a fraction of its maintenance and downtime cost. Beyond shrinking the size and the weight of the transformer, the use of power electronics brings some other interesting advantages, including the possibility to correct the load power factor and to interface with resistance temperature detectors, to avoid blade overheating.
机译:用于直升机的传统冰保护系统从发电机传送电力,通过嵌入“滑动”装置中的脆碳接触来传达给叶片加热器。然而,苛刻的振动环境与高速/电流相结合,通常会导致闪亮,粉末和滑倒本身的非常短的寿命。为了消除摩擦,考虑使用电力电子器件辅助的旋转变压器的使用。为此目的,从第一原理研究合适的变压器拓扑,并与谐振逆变器配对。初步有限元方法分析随后对减压变压器原型的实验验证表明,合适的全尺度单元可以转移必要的电力以保护中型直升机尾转子,其重量/尺寸与遗留滑动相当的重量/尺寸其维护和停机费用的一小部分。除了缩小变压器的尺寸和重量,电力电子设备的使用带来了一些其他有趣的优势,包括纠正负载功率因数和与电阻温度检测器接口的可能性,以避免刀片过热。

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