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OPTIMIZATION AND DESIGN PRINCIPLES OF A MINIMAL-WEIGHT, WEARABLE HYDRAULIC POWER SUPPLY

机译:最小重量,可穿戴液压电源的优化和设计原理

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The field of wearable hydraulics for human-assistive devices is expanding. One of the major challenges facing development of these systems is creating lightweight, portable power units. This project's goal was to develop design strategies and guidelines with the use of analytical modeling to minimize the weight of portable hydraulic power supplies in the range of 50-300 W. Steady-state, analytical models were developed and validated for a system containing a lithium-polymer battery, brushless DC motor, and axial-piston pump. Component parameters such as motor size, pump size, and swashplate angle were varied to explore and develop four main design guidelines that can be used by designers to minimize overall system weight. First, it is often not beneficial to select the smallest sized electric motor that can provide the required torque and speed. Second, cooling systems generally do not help reduce overall system weight. Third, the gearbox between the electric motor and pump should be eliminated to reduce system weight. Fourth, iterative modeling is necessary to determine the various range of particular component parameters necessary to result in a minimal-weight system. The analytical model developed takes inputs of desired flowrate, pressure, and runtime, and outputs the combination of pump size, swashplate angle, and motor size that results in a minimal-weight system. The four design principles and the computer simulation are tools that can be used to either design a fully custom, weight-optimized power supply or to aid in the selection of commercially available components for a low-weight power supply.
机译:用于人辅助装置可穿戴液压的领域正在扩大。这些系统的开发面临的主要挑战之一正在制造轻量级,便携式电力单元。该项目的目标是利用分析模型开发设计策略和指导方针,以最大限度地减少便携式液压电源的重量在50-300W W.稳态的范围内,为含锂的系统开发并验证了分析模型 - 聚合物电池,无刷直流电机和轴向活塞泵。多种组件参数,如电动机尺寸,泵尺寸和斜盘角度,以探索和开发四种主要设计指南,这些准则可以通过设计人员使用,以最大限度地减少整体系统重量。首先,选择可以提供所需扭矩和速度的最小尺寸电动机通常是没有有益的。其次,冷却系统通常不有助于减少整体系统重量。第三,应消除电动机和泵之间的齿轮箱,以降低系统重量。第四,迭代建模是必要的,以确定导致最小权重系统所需的各种特定组件参数范围。开发的分析模型采用所需流量,压力和运行时间的输入,并输出泵尺寸,斜盘角度和电机尺寸的组合,从而导致最小权重系统。四种设计原则和计算机仿真是可用于设计完全定制的重量优化电源的工具,或者有助于选择用于低重量电源的市售组件。

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