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Development of a waterproof servo unit for amphibious robots

机译:用于两栖机器人防水伺服单元的开发

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摘要

Amphibious robots based on hybrid locomotion mechanisms have better environmental adaptability than conventional wheeled or tracked mobile robots, and therefore have great potentials to be valuable robotic assistant for aiding search and rescue operations after natural or industrial catastrophes, such as tsunami, floods, or mining disasters. However, their locomotion mechanisms and sensory circuitry are complex and vulnerable to water and dust contaminants, which prevents them from being practically used at disaster sites. In this paper, implementation of a waterproof servo unit is proposed as a simple and economic protection measure based on decentralized sealing strategy for two of the most vital components in amphibious robots, namely the servo motor and the absolute encoder. Crucial design considerations relating to waterproof function of the motor and accuracy of the encoder are discussed. Prototypes of the motor shield and the waterproof encoder are fabricated. Finally, the proposed idea and designs are verified by experiments.
机译:基于混合动力车机制机制的两栖机器人具有比传统的轮式或追踪的移动机器人更好的环境适应性,因此有很大的潜力是有价值的机器人助理,以便在自然或工业灾难之后辅助搜索和救援行动,例如海啸,洪水或采矿灾害。然而,它们的运动机制和感官电路是复杂的并且容易受水和粉尘污染物的影响,这可以防止它们实际上在灾区使用。在本文中,提出了一种基于两栖机器人中两种最重要的部件的分散密封策略的简单经济保护措施,即伺服电机和绝对编码器。讨论了与电动机防水功能有关的重要设计考虑因素和编码器的准确性。制造电机屏蔽和防水编码器的原型。最后,通过实验验证了所提出的想法和设计。

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