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    • 1. 发明申请
    • PRINTING PROCESS MODEL PREDICTIVE CONTROL WITH DISTURBANCE PREVIEW
    • 打印过程模型预测控制与干扰预测
    • US20110096353A1
    • 2011-04-28
    • US12603674
    • 2009-10-22
    • Faming LIEric Scott HambyYongsoon Eun
    • Faming LIEric Scott HambyYongsoon Eun
    • G06F15/00
    • G03G15/2064G03G15/2039G03G15/5029G03G2215/00805
    • According to aspects of the embodiments, there is provided methods and systems that incorporate a model predictive controller (MPC) in an image reproduction machine with known disturbance information. The MPC uses the control action at a current time in order to minimize the impact of an impending disturbance as well as to maximize current control performance. The impending disturbance is used by the MPC to determine an incremental change that combines steady state and transient state impact on the image reproduction machine. Disturbance such as print media type, image content type, physical dimension of the print media, weight of the print media, and print job data can be employed. Further, control of the image reproduction machine is generated in real time over a receding horizon, for the purpose of minimizing a cost function indicative of image variation, energy consumption, or the like.
    • 根据实施例的方面,提供了在具有已知干扰信息的图像再现机中并入模型预测控制器(MPC)的方法和系统。 MPC在当前时间使用控制动作,以便最小化即将发生的干扰的影响以及最大化电流控制性能。 MPC使用即将发生的干扰来确定将稳态和瞬态影响结合在图像再现机上的增量变化。 可以采用打印介质类型,图像内容类型,打印介质的物理尺寸,打印介质的重量以及打印作业数据等干扰。 此外,为了最小化指示图像变化,能量消耗等的成本函数的目的,在后退水平线上实时生成图像再现机的控制。
    • 6. 发明申请
    • ADAPTIVE TRANSFER PERFORMANCE REGULATION BY FEEDBACK AND CONTROL
    • 通过反馈和控制自适应传输性能调节
    • US20100080596A1
    • 2010-04-01
    • US12243575
    • 2008-10-01
    • Eric M. GROSSFaming LI
    • Eric M. GROSSFaming LI
    • G03G15/16
    • G03G15/161G03G15/1605G03G15/5041G03G15/5058G03G2215/1614G03G2215/1623
    • An adaptive approach is described that maximizes xerographic transfer efficiency, i.e. minimizes post toner image transfer residual mass, in response to changes in operational conditions, variations in material, and/or changes in other factors that may otherwise adversely affect xerographic transfer efficiency. The described approach may be used during a set up phase, or startup phase, of a xerographic system to determine an initial transfer field that provides a desired level of toner image transfer efficiency. The described approach may also be used in real time to dynamically adjust a transfer field to maintain a desired level of transfer efficiency. The described approach allows optimal toner image transfer efficiency to be achieved despite changes in the operational environments, and/or changes in the materials, e.g., paper, toner, etc., being processed.
    • 描述了自适应方法,其最大化响应于操作条件的变化,材料变化和/或其他可能不利地影响静电转印效率的其它因素的变化来最小化后期调色剂图像转印残余质量的静电转印效率。 所描述的方法可以在静电复印系统的设置阶段或启动阶段期间使用,以确定提供期望水平的调色剂图像转印效率的初始转印区域。 所描述的方法也可以实时地使用以动态地调整传送场以保持期望的传送效率水平。 所描述的方法允许尽管操作环境的变化和/或正在处理的材料(例如纸张,调色剂等)的变化来实现最佳的调色剂图像转印效率。