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Recent Developments of the Arrayed Controlled Turn-less Structures (ACTS) Motor

机译:阵列控制瓦尔结构的最新发展(ACTS)电机

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The paper discusses the application of the Array Controlled Turn-less Structures (ACTS) motor for VTOL application. The motor enhances the three main competing characteristics of electric motors; namely specific power, efficiency and reliability. The motor arrays an ensemble of elemental turn-less motors which include turn-less elements each with their dedicated inverters which are operated in synchronism. The resulting small pole size enhances the power density, the enhanced conductor packing enhances the efficiency, and the massive parallelism enhance the reliability. Vertical takeoff requires much higher thrust compared to wing assisted takeoff. With limited on-board power, this higher thrust is presently provided by in ordinary larger propulsion disk area which reduces the craft aerodynamics, and the cruising Lift-to-Drag (L/D) ratio and accordingly the flight efficiency and range. The high specific power of the ACTS motor allows for a different scenario and thus craft architecture. By substantially increasing the takeoff power which is now possible with the higher specific power of the ACTS motor, the propulsion disk area can be substantially reduced, with the resulting greater streamlined, high L/D craft, and thus longer range. The paper discusses key aspect of the motor and inverter architecture and technology. Furthermore, it discusses its application to a high L/D VTOL and prospective performance.
机译:本文讨论了阵列控制的扭转结构(Acts)电机用于VTOL应用的应用。电机增强了电动机的三个主要竞争特性;即特定的功率,效率和可靠性。电动机阵列是元素挡板电动机的集合,其包括各自的扭转元件,每个元件都有其专用逆变器,它们以同步运行。由此产生的小极尺寸增强了功率密度,增强的导体包装增强了效率,并且巨大的并行性提高了可靠性。与翼辅助起飞相比,垂直起飞需要更高的推力。通过有限的板载电源,在普通的较大推进盘区域中,目前提供了这种较高的推力,这减少了工艺空气动力学,以及巡航升力(L / D)比率,因此采样的飞行效率和范围。 Acts Motor的高特定功率允许不同的场景,从而实现工艺架构。通过基本上增加现在可以用动作电动机的较高特定功率来增加起飞功率,可以基本上减小推进盘区域,得到更大的流线型,高L / D工艺,从而更长的范围。本文讨论了电机和逆变器架构和技术的关键方面。此外,它将其应用于高L / D VTOL和预期性能。

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