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Linear Motion System Cable Elimination Via Multiphase Capacitive Power Transfer Through Sliding Journal Bearings

机译:通过滑动轴颈轴承通过多相电容动力传输的线性运动系统电缆消除

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Electrical loads that slide on moving gantries or rails are common in industry and automation, e.g. assembly lines, spindle heads, x-y tables, etc. These systems often use insulated linear bearings to support mechanical movement during the intended process and a flexible wire-way or cable track provides an electrical connection to power moving parts. This paper proposes eliminating the cable connection by using the capacitance of the linear bearings to transfer power between stationary and moving parts, i.e. the bearings/rails form the coupling of a capacitive power transfer system. This is enabled by a 3 - 5 MHz, 3 phase, resonant inverter capable of driving AC current through the bearing-rail capacitance where it is ultimately rectified on a carriage for final use. The high switching frequency enables smaller bearing coupling capacitance to be used with lower developed voltages. The inverter uses 650V Gallium Nitride (GaN) High Electron Mobility Transistors (HEMTs) in a 3 phase configuration to extend switching frequencies to multi-MHz, thus enabling power transfer levels towards 10~2-10~3 watt levels. The brushless and wireless excitation of a sliding electrical load, using linear plain bearings sliding on conventional 1 inch diameter anodized shafting serves as a demonstration application. Experimental tests at 3.66 MHz demonstrate 111.9W power transfer to a sliding carriage load.
机译:例如,在移动的龙舌兰或轨道上滑动的电负载是工业和自动化的常见,例如,组装线,主轴头,X-Y表等。这些系统通常使用绝缘线性轴承来支撑在预期过程中的机械运动,并且柔性线路或电缆轨道提供电动连接到电力移动部件。本文提出通过使用线性轴承的电容来消除电缆连接,以在静止和移动部件之间传递电力,即轴承/轨道形成电容动力传输系统的耦合。这是通过3 - 5 MHz,3相,谐振逆变器的能够驱动AC电流通过轴承导轨电流驱动,在那里最终将在托架上进行最终使用。高开关频率使得具有较小的轴承耦合电容能够与较低的显影电压一起使用。逆变器采用3个相位配置中的650V氮化镓(GaN)高电子迁移率晶体管(HEMT)以将开关频率扩展到多MHz,从而使电力传输水平达到10〜2-10〜3瓦差。使用线性滑动轴承滑动在传统的1英寸直径阳极氧化轴路上的线性滑动轴承的无刷和无线激励用作演示应用。 3.66 MHz的实验测试表明了111.9W的电力转移到滑动架载荷。

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