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Design of a hybrid optical image stabilization actuator to compensate for hand trembling

机译:补偿手抖的混合光学防抖执行器的设计

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In this paper, a novel hybrid optical image stabilization (OIS) actuator for digital camcorder is proposed. Image stabilization for this hybrid type consists of both radially and tangentially moving components to compensate for hand trembling. The proposed OIS actuator, which uses a voice coil motor method, is divided into two parts: a structure and a magnetic circuit. For the structural part, the driving mechanism consists of two systems: one system is based on a ball guide with a magnetic spring, and the other system is based on a pivot bearing. The former system is typically used as a driving mechanism in mobile devices, whereas the latter system has advantages such as mechanical stability and reduced friction. Overall, a magnetic spring between the magnet and yoke should be considered to select the best magnetic circuit part design and mechanism design. Regarding the electro-magnetic (EM) circuit, two types of EM circuits were designed to satisfy each direction: one circuit is a moving magnet circuit for the radial direction, and the other circuit is a moving coil for the tangential direction. In a digital camcorder, the space for the OIS actuator is limited, and thus, optimized actuator with adequate performances is required. To solve these problems, a sensitivity analysis was performed using the design of experiment procedure. Based on these results, an objective function was defined for the optimization procedure. Finally, the actuator was fabricated, and the dynamic characteristics and feasibility of adapting two types of mechanisms of the suggested OIS actuator were verified. The experimental results indicate that the proposed OIS actuator exhibits sufficient performance for the sensitivity.
机译:在本文中,提出了一种新型的用于数码摄像机的混合光学防抖(OIS)驱动器。这种混合类型的图像稳定包括径向和切向移动的分量,以补偿手部抖动。提出的使用音圈电动机方法的OIS执行器分为两部分:结构和磁路。对于结构部件,驱动机构由两个系统组成:一个系统基于带磁性弹簧的滚珠导向装置,另一个系统基于枢轴轴承。前者系统通常用作移动设备中的驱动机构,而后者系统具有诸如机械稳定性和减小的摩擦的优点。总体而言,应考虑在磁体和磁轭之间使用磁弹簧,以选择最佳的磁路部件设计和机构设计。关于电磁(EM)电路,设计了两种类型的EM电路来满足每个方向:一个电路是沿径向方向的运动磁路,另一种电路是沿切线方向的运动线圈。在数字摄像机中,OIS执行器的空间有限,因此需要具有足够性能的优化执行器。为了解决这些问题,使用实验程序的设计进行了敏感性分析。基于这些结果,为优化过程定义了目标函数。最后,制造了执行器,并验证了所建议的OIS执行器采用两种类型的机构的动态特性和可行性。实验结果表明,提出的OIS执行器具有足够的灵敏度。

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