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Compact Permanent Magnet Power Supply for Directed Energy

机译:紧凑的永磁电源,用于定向能量

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There is a growing need for light and compact power generation in mobile and space-constrained platforms. The transient load profiles typical for advanced weapons demand energy storage that can be charged and discharged quickly and fail benignly. A composite flywheel-based electromechanical battery (EMB) operating at high-speed provides compact and lightweight energy storage and minimal degradation over a large cycle life without the hazards associated with a battery or capacitor failure. Moreover, it can be designed with a generator capable of rapid recharging, as the charge rate is governed by mechanical inertia rather than electrochemistry. A topology that shows promise is an arbor-based EMB with an integral PM motor/generator for rapid recharging. An inside-out PM motor/generator allows the magnets to be structurally supported at the inner diameter of the rotating arbor/flywheel with an interior stator winding. The arbor connects the high-strain flywheel rim and a low-strain rotor hub while providing structural stiffness and torque transmission. A composite arbor enables a lightweight structure that can operate at top speeds several times higher than metals with material properties engineered to strain match the flywheel rim. The higher speed is important because the stored energy scales linearly with mass but with the square of velocity. So small high-speed rotating machines can have high power and energy density. Even with the potential benefits, the technology is not commonplace because of two technical challenges. One is composite arbor development and the other is removal of rotor heat due to windage and magnet losses. An EMB concept with an integral PM motor/generator will be presented, which addresses these issues in the 100 kW power range and can store tens of MJ. Utilizing a composite arbor design validated by spin test saves significant development time and cost, and active rotor cooling enables a significant increase in performance.
机译:在移动和空间受限平台中越来越需要光和紧凑的发电。高级武器典型的瞬态负载型材需求能量存储可以快速充电和放电,良好地失败。在高速操作的基于复合飞轮的机电电池(MEM)在大型循环寿命上提供紧凑和轻质的能量存储,并且在没有与电池或电容器故障相关的危险的情况下进行最小的降低。此外,它可以设计有能够快速再充电的发电机设计,因为电荷率受到机械惯性而不是电化学的控制。显示承诺的拓扑是一个基于arbor的MEB,其具有整体PM电机/发电机,用于快速充电。内外PM电动机/发电机允许在具有内部定子绕组的旋转轴/飞轮的内径处结构地支撑磁体。 Arbor连接高菌株飞轮边缘和低应变转子毂,同时提供结构刚度和扭矩传递。复合轴承座使得轻型结构能够以高于金属的顶部速度操作,该材料具有设计成匹配的材料特性与飞轮边缘匹配。更高的速度很重要,因为储存能量与质量线性缩放,但具有速度平方。因此,小型高速旋转机器可具有高功率和能量密度。即使有潜在的好处,这项技术也不普遍,因为两个技术挑战。一种是复合轴轴的开发,另一个是由于风度和磁铁损耗而去除转子热量。将提出具有整体PM电动机/发电机的EMB概念,这在100 kW功率范围内解决了这些问题,并且可以存储数十MJ。利用旋转试验验证的复合轴设计可节省显着的开发时间和成本,主动转子冷却能够显着增加性能。

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