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A High Performance Voice Coil Actuator for Optomechatronic Applications

机译:用于光学透明应用的高性能音圈致动器

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Voice coil actuators (VCAs) are simple electro-mechanical devices, which are capable of generating linear motion in response to an electrical input. The generic cylindrical design of commercially available actuators imposes a large variety of limitations on the end user. The most prominent is the requirement to design and fit extra components to the actuator in order to increase functionality. To solve this issue, a novel voice coil actuator was created, which reconfigures the standard cylindrical design with one of a rectangular structure. The novel actuator incorporates planar magnets in a modified Halbach array configuration to ensure compactness and an exceptionally intense, uniform magnetic field. The moving coil is substituted with a printed circuit board (PCB) encompassing numerous current conducting traces. The board contains a miniature linear rail and bearing system, unified drive electronics, and highly adaptive position feedback circuitry resulting in a compact, highly dynamic and accurate device. In pursuit of optomechatronic applications, two distinct parallel kinematic mechanisms (PKMs) were developed to utilize the high dynamics and accuracy of the novel actuator. These devices were configured to function in only rotational degrees-of-freedom (DOF) and because of their underlying kinematic structures can be referred to as parallel orientation manipulators (POMs). In particular, two structures were defined, 2-PSS/U and 3-PSS/S, in order to constrain their payloads to two and three degrees of rotational freedom, respectively. The resultant manipulators are highly dynamic, precise and fulfill size, weight, and power requirements for many applications such as sense and avoidance and visual tracking.
机译:音圈执行器(VCA)是一种简单的机电设备,能够根据电气输入产生线性运动。商用致动器的通用圆柱形设计对最终用户施加了各种各样的限制。最突出的是要求设计额外的部件并将其安装到致动器上,以增加功能。为了解决这个问题,一种新型的音圈驱动器被创造出来,它将标准的圆柱形设计重新配置为矩形结构。新型致动器采用改进的Halbach阵列结构中的平面磁铁,以确保紧凑性和异常强、均匀的磁场。动圈由一块印刷电路板(PCB)代替,PCB包含许多导电痕迹。该电路板包含一个微型线性轨道和轴承系统、统一的驱动电子设备和高度自适应的位置反馈电路,从而形成一个紧凑、高度动态和精确的设备。为了实现光机电一体化应用,开发了两种不同的并联运动机构(PKM),以利用新型致动器的高动态性和精度。这些设备被配置为仅在旋转自由度(DOF)下工作,并且由于其基本运动学结构,可以称为平行定向机械手(POM)。特别是,定义了两种结构,2-PSS/U和3-PSS/S,以分别将其有效载荷约束为两个和三个旋转自由度。由此产生的机械手具有高度动态性、精确性,并满足许多应用的尺寸、重量和功率要求,例如感知和避免以及视觉跟踪。

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