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Modified H-LSM for urban MAGLEVs

机译:针对城市磁悬浮电动汽车的改进型H-LSM

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MAGLEVs-vehicles without wheels - that use electromagnetic forces for propulsion, levitation (suspension) and guidance -are credited with reduced noise, vibration and energy per passenger and km for given commercial speeds (from urban to suburban or interurban high speeds (400km/h and more)). Existing active and passive guide way MAGLEVs have propulsion (only) efficiency around 0.7 and a power factor bellow 0.65, while the active guide way MAGLEVs imply also large initial (active track) costs. A passive guideway H-LSM (homopolar linear synchronous motor) MAGLEV (MAGNIBUS-01) with integrated propulsion and levitation control proved in a 4 tons prototype at 10 m/s, a total efficiency of 0.8 and 0.8 lagging power factor (propulsion and levitation copper and iron losses considered). In an effort to further reduce the system (and passive guide way) initial costs but keep efficiency and power factor as above an improved H-LSM topology, capable to offer controlled propulsion, levitation and guidance is investigated, for a MAGLEV “flying” under a single beam sustained by a high post structure (tele cabin-like), by preliminary design and key FEM validations for a potential 16 tons urban vehicle capable of 16kN up to 20 m/s for a total efficiency above 80% above 10m/s. In depth design and control investigations are planned for the near future.
机译:使用电磁力进行推进,悬浮(悬架)和制导的MAGLEV无轮车辆,在给定的商业速度(从城市到郊区或城市间的高速(400 km / h)下,每位乘客的噪音,振动和能量减少以及公里数减少和更多))。现有的主动和被动导轨MAGLEV的推进效率(仅)约为0.7,功率因数在0.65以下,而主动导轨MAGLEV的隐含着较大的初始(主动轨道)成本。集成推进和悬浮控制的无源导轨H-LSM(同极线性同步电动机)MAGLEV(MAGNIBUS-01)在4吨原型机中以10 m / s的速度进行了验证,总效率分别为0.8和0.8滞后功率因数(推进和悬浮)铜和铁的损失)。为了进一步降低系统(和被动式引导系统)的初始成本,但仍保持效率和功率因数不变,对一种改进的H-LSM拓扑结构进行了研究,该结构能够提供受控的推进,悬浮和引导,用于MAGLEV的“飞行”通过初步设计和关键的有限元验证,对高梁结构(类似车厢)支撑的单束光束进行测试,以对潜在的16吨城市车辆进行测试,其能力为16kN,速度可达20 m / s,总效率高于10m / s时可达到80%以上。计划在不久的将来进行深入的设计和控制研究。

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