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    • 2. 发明授权
    • Systems and methods for modifying stereoscopic images
    • 用于修改立体图像的系统和方法
    • US09143754B2
    • 2015-09-22
    • US13364880
    • 2012-02-02
    • Yi-Chao TsaiChih-Yu Cheng
    • Yi-Chao TsaiChih-Yu Cheng
    • H04N13/00
    • H04N13/106H04N13/111H04N2013/0074H04N2013/0081
    • Various embodiments are disclosed for modifying stereoscopic images. One embodiment is a method implemented in an image processing device for modifying stereoscopic images. The method comprises retrieving, by an image processing device, a stereoscopic image having at least a first view image and a second view image and retrieving an orientation selection relating to the stereoscopic image, the orientation selection comprising a selection other than one of: a horizontal flip selection and a 180 degree rotation selection. The method further comprises calculating a depth map according to at least part of the stereoscopic image, rotating the first view image based on the orientation selection to obtain a rotated first view image, and generating a new second view image according to the depth map and the rotated first view image.
    • 公开了用于修改立体图像的各种实施例。 一个实施例是在用于修改立体图像的图像处理装置中实现的方法。 该方法包括由图像处理设备检索具有至少第一视图图像和第二视图图像的立体图像,并检索与立体图像相关的定向选择,该方向选择包括除了以下之一的选择:水平 翻转选择和180度旋转选择。 所述方法还包括根据所述立体图像的至少一部分来计算深度图,基于所述方位选择旋转所述第一视点图像以获得旋转的第一视图图像,以及根据所述深度图和所述第二视图图像生成新的第二视图图像 旋转第一个视图图像。
    • 4. 发明申请
    • ADAPTIVE HEATING SYSTEM USING BOTH AC AND DC POWER
    • 自适应加热系统使用双向交流和直流电源
    • US20140246421A1
    • 2014-09-04
    • US13784780
    • 2013-03-04
    • MING-YI CHAO
    • MING-YI CHAO
    • H05B3/02
    • H05B1/0244
    • An adaptive heating system using both AC and DC power includes an AC and DC switching device connected to an AC source and at least one DC source; a device to be heated having an AC heating device and at least one DC heating device and a detector for detecting at least one state therein; the AC heating device being connected to the AC source and the DC heating device being connected the DC source; and a controller connected to the AC and DC switching device and the detector for receiving signals from the detector and for adjusting outputs of the AC and DC switching device based on detection results from the detector. The AC source is used in high power consumption state and the DC source is used in lower power consumption state. When power consumption is very high, both AC source and the DC source are used simultaneously.
    • 使用AC和DC电力的自适应加热系统包括连接到AC电源和至少一个DC电源的AC和DC开关装置; 具有AC加热装置和至少一个DC加热装置和用于检测其中的至少一个状态的检测器的被加热装置; AC加热装置连接到AC源,DC加热装置连接DC源; 以及连接到AC和DC开关装置的控制器和用于从检测器接收信号的检测器,并且用于基于来自检测器的检测结果来调整AC和DC开关装置的输出。 交流电源用于高功耗状态,直流电源用于低功耗状态。 当功耗非常高时,同时使用交流电源和直流电源。
    • 5. 发明申请
    • METHOD FOR FORECASTING WORK-IN-PROCESS OUTPUT SCHEDULE AND COMPUTER PROGRAM PRODUCT THEREOF
    • 预测工作流程输出时间表和计算机程序产品的方法
    • US20130346024A1
    • 2013-12-26
    • US13561096
    • 2012-07-30
    • Haw-Ching YANGChien-Yi CHAOFan-Tien CHENG
    • Haw-Ching YANGChien-Yi CHAOFan-Tien CHENG
    • G06F17/18G06F19/00
    • G06Q10/00
    • A method for forecasting a WIP (work in process) output schedule and a computer program product thereof are provided. A plurality of sets of historical WIP data regarding a product generated in respective historical periods are first collected, in which the product has a maximum historical production cycle. Thereafter, a predetermined time is used to divide the maximum historical production cycle into intervals. Then, the quantities of historical WIPs appearing in the respective intervals are computed in accordance with output times of the historical WIPs recorded in each of the sets of historical WIP data, thereby obtaining output probability density data series. If the number of the historical periods is greater than or equal to a minimum model-building number, a predicted output probability density data series of a next period following the historical periods is conjectured by using the output probability density data series in accordance with a prediction algorithm.
    • 提供了一种用于预测WIP(在制品)输出计划及其计算机程序产品的方法。 首先收集关于在各历史期间生成的产品的多组历史WIP数据,其中产品具有最大历史生产周期。 此后,使用预定时间将最大历史生产周期划分为间隔。 然后,根据记录在每组历史WIP数据中的历史WIP的输出时间来计算出现在各个间隔中的历史WIP的数量,由此获得输出概率密度数据序列。 如果历史期间的数量大于或等于最小建模号码,则通过使用根据预测的输出概率密度数据序列推测历史周期之后的下一个周期的预测输出概率密度数据序列 算法。
    • 9. 发明授权
    • Displacement estimation device and method for the same
    • 位移估计装置及方法相同
    • US08194743B2
    • 2012-06-05
    • US11477109
    • 2006-06-28
    • Hsin-Chia ChenYi-Fang LeeTzu-Yi Chao
    • Hsin-Chia ChenYi-Fang LeeTzu-Yi Chao
    • H04N7/12H04N11/02H04N11/04
    • G06F3/0317G06K9/6202H04N5/145
    • A displacement estimation device includes a vector calculator and a displacement calculator, for use in estimating a displacement vector from a pattern in a first original image to a pattern in a second original image. The vector calculator calculates a parameter for each pixel in the first original image and the second original image. The parameter of a pixel integrates the information of the intensities of all the pixels in a region of interest (ROI) surrounding the pixel, and the relative distances from all the pixels in the ROI to the pixel. The displacement calculator calculates the displacement vector from a pattern in the first original image to a pattern in the second original image based on the parameters calculated by the vector calculator for the first original image and the second original image.
    • 位移估计装置包括矢量计算器和位移计算器,用于估计从第一原始图像中的图案到第二原始图像中的图案的位移矢量。 矢量计算器计算第一原始图像和第二原始图像中的每个像素的参数。 像素的参数将像素周围的感兴趣区域(ROI)中的所有像素的强度的信息以及从ROI中的所有像素到像素的相对距离进行积分。 位移计算器基于由第一原始图像和第二原始图像的矢量计算器计算出的参数,计算从第一原始图像中的图案到第二原始图像中的图案的位移矢量。