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Acceleration control system for semi-active in-car crib with joint application of regular and inverted pendulum mechanisms

机译:用于半主动车内婴儿床的加速控制系统,具有规则和倒立摆机制的联合应用

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To reduce the risk of injury to an infant in an in-car crib (or in a child safety bed) collision shock during a car crash, it is necessary to maintain a constant force acting on the crib below a certain allowable value. To realize this objective, we propose a semi-active in-car crib system with the joint application of regular and inverted pendulum mechanisms. The arms of the proposed crib system support the crib like a pendulum while the pendulum system itself is supported like an inverted pendulum by the arms. In addition, the friction torque of each arm is controlled using a brake mechanism that enables the proposed in-car crib to decrease the acceleration of the crib gradually and maintain it around the target value. This system not only reduces the impulsive force but also transfers the force to the infant's back using a spin control system, i.e., the impulse force acts is made to act perpendicularly on the crib. The spin control system was developed in our previous work. This work focuses on the acceleration control system. A semi-active control law with acceleration feedback is introduced, and the effectiveness of the system is demonstrated using numerical simulation and model experiment.
机译:为了减少车内婴儿床(或在儿童安全床)碰撞撞机中受伤的风险,在车祸中碰撞冲击,有必要保持在低于某种允许值的婴儿床上作用的恒定力。为了实现这一目标,我们提出了一种半主动车内婴儿床系统,具有共同应用的规则和倒立的摆锤机制。所提出的婴儿床系统的臂支撑婴儿床,如摆锤,而摆锤系统本身像臂一样支撑。另外,使用制动机构控制每个臂的摩擦扭矩,该制动机构使得提出的车内婴儿床能够逐渐降低婴儿床的加速度并将其维持在目标值周围。该系统不仅减少了脉冲力,而且还使用自旋控制系统将力转移到婴儿的后部,即,使脉冲力作用垂直于婴儿床上作用。自旋控制系统是在我们以前的工作中开发的。这项工作侧重于加速度控制系统。介绍了一个半主动控制法,使用数值模拟和模型实验证明了系统的有效性。

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