首页> 外文会议>ASME annual dynamic systems and control conference >AN INVERSE-FREE DISTURBANCE OBSERVER FOR ADAPTIVE NARROW-BAND DISTURBANCE REJECTION WITH APPLICATION TO SELECTIVE LASER SINTERING
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AN INVERSE-FREE DISTURBANCE OBSERVER FOR ADAPTIVE NARROW-BAND DISTURBANCE REJECTION WITH APPLICATION TO SELECTIVE LASER SINTERING

机译:自适应窄带扰动抑制的无逆扰动观测器及其在选择性激光烧结中的应用

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Selective laser sintering (SLS) is an additive manufacturing (AM) process that builds 3-dimensional (3D) parts by scanning a laser beam over powder materials in a layerwise fashion. Due to its capability of processing a broad range of materials, the rapidly developing SLS has attracted wide research attention. The increasing demands on part quality and repeatability are urging the applications of customized controls in SLS. In this work, a Youla-Kucera parameterization based forward-model selective disturbance observer (FMSDOB) is proposed for flexible servo control with application to SLS. The proposed method employs the advantages of a conventional disturbance observer but avoids the need of an explicit inversion of the plant, which is not always feasible in practice. Advanced filter designs are proposed to control the waterbed effect. In addition, parameter adaptation algorithm is constructed to identify the disturbance frequencies online. Simulation and experimentation are conducted on a galvo scanner in SLS system.
机译:选择性激光烧结(SLS)是一种增材制造(AM)工艺,通过以分层方式在粉末材料上扫描激光束来构建3维(3D)零件。由于其能够处理多种材料,因此快速发展的SLS引起了广泛的研究关注。对零件质量和可重复性的日益增长的要求促使定制控制在SLS中的应用。在这项工作中,提出了一种基于Youla-Kucera参数化的前向模型选择性扰动观测器(FMSDOB),用于柔性伺服控制,并将其应用于SLS。所提出的方法利用了常规干扰观测器的优点,但是避免了对设备进行显式倒置的需要,这在实践中并不总是可行的。提出了先进的过滤器设计来控制水床效应。另外,构造参数自适应算法以在线识别干扰频率。在SLS系统中的振镜扫描仪上进行仿真和实验。

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