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    • 1. 发明申请
    • RESOURCE CONSERVATION BASED ON A REGION OF INTEREST
    • 基于利益区的资源保护
    • US20120327218A1
    • 2012-12-27
    • US13164783
    • 2011-06-21
    • Nicholas Robert BakerJohn Allen TardifRaghu MurthiSteven Bathiche
    • Nicholas Robert BakerJohn Allen TardifRaghu MurthiSteven Bathiche
    • H04N7/18
    • H04N5/23212G06F3/017G06K9/00362
    • A detected region of interest is used to reduce the data processed by a capture device and/or transmitted by the capture device to a console, and/or to reduce power consumption by the capture device. Raw data from the one or more sensors is processed in the capture device to reduce data corresponding to regions outside the region of interest. Such a data reduces computational requirements, which conserves power. Operational parameters of the capture device are adjusted based on the region of interest mask. A field of view, the resolution, or the sensitivity of at least one of the sensors may be narrowed to focus resources on the region of interest. Adjusting the operational parameters of a sensor reduces the power consumption of the capture device and reduces data input. An illumination source may be adjusted to focus the illumination source on the region of interest to use less power.
    • 检测到的感兴趣区域用于将由捕获设备处理的数据和/或由捕获设备发送的数据减少到控制台,和/或降低捕获设备的功率消耗。 在捕获装置中处理来自一个或多个传感器的原始数据,以减少对应于感兴趣区域外的区域的数据。 这样的数据减少了计算需求,从而节省了电力。 捕获装置的操作参数基于感兴趣区域掩模进行调整。 可以缩小至少一个传感器的视场,分辨率或灵敏度,以将资源聚焦在感兴趣的区域上。 调整传感器的运行参数会降低捕获设备的功耗并减少数据输入。 可以调整照明源以将照明源聚焦在感兴趣的区域上以使用更少的功率。
    • 2. 发明申请
    • REGION OF INTEREST SEGMENTATION
    • 利益分配区域
    • US20120326959A1
    • 2012-12-27
    • US13164785
    • 2011-06-21
    • Raghu MurthiSteven BathicheJohn Allen TardifNicholas Robert Baker
    • Raghu MurthiSteven BathicheJohn Allen TardifNicholas Robert Baker
    • G06K9/34G09G5/00
    • G06F3/011G06F3/005G06K9/209H04H60/45
    • A sensor manager provides dynamic input fusion using thermal imaging to identify and segment a region of interest. Thermal overlay is used to focus heterogeneous sensors on regions of interest according to optimal sensor ranges and to reduce ambiguity of objects of interest. In one implementation, a thermal imaging sensor locates a region of interest that includes an object of interest within predetermined wavelengths. Based on the thermal imaging sensor input, the regions each of the plurality of sensors are focused on and the parameters each sensor employs to capture data from a region of interest are dynamically adjusted. The thermal imaging sensor input may be used during data pre-processing to dynamically eliminate or reduce unnecessary data and to dynamically focus data processing on sensor input corresponding to a region of interest.
    • 传感器管理器使用热成像提供动态输入融合,以识别和分割感兴趣的区域。 热覆盖层用于根据最佳传感器范围将异质传感器聚焦在感兴趣区域上,并减少感兴趣物体的歧义。 在一个实施方案中,热成像传感器将包括感兴趣对象的感兴趣区域定位在预定波长内。 基于热成像传感器输入,多个传感器中的每个传感器的区域被聚焦,并且动态地调整每个传感器用于捕获来自感兴趣区域的数据的参数。 可以在数据预处理期间使用热成像传感器输入来动态地消除或减少不必要的数据,并且动态地聚焦对应于感兴趣区域的传感器输入的数据处理。
    • 8. 发明授权
    • Compositing images from multiple sources
    • 从多个来源组合图像
    • US07602406B2
    • 2009-10-13
    • US10968703
    • 2004-10-19
    • Donald M. Gray, IIIJohn Allen Tardif
    • Donald M. Gray, IIIJohn Allen Tardif
    • G09G5/00
    • G09G5/14G06F3/14G09G2340/10G09G2340/125G09G2370/04
    • Systems and methods for compositing an image directly from multiple source image data for reducing system memory footprint and bandwidth and for improving color quality of the image. The image is divided into spans, lines, and slices. Each line includes at least one span and each slice includes at least one line. All lines in a slice have spans associated with identical sources. An image is composited by reading the image data directly from one or more sources of each span. If necessary, the sources are blended. A control structure is used to provide the image context and identifies the sources of the spans. The control structure includes headers for each data stream from each source of each span. Also, the color quality of the image is improved by reducing the number of color space conversions that occur as the image is composited. All sources in the same color space are blended before being blended with sources from other color spaces. Preferably, no more than a single color conversion is required.
    • 用于从多个源图像数据直接合成图像的系统和方法,以减少系统内存占用和带宽,并提高图像的色彩质量。 图像分为跨度,线和切片。 每行包括至少一个跨度,每个切片包括至少一个直线。 切片中的所有行都具有与相同源相关联的跨度。 通过直接从每个跨度的一个或多个来源读取图像数据来合成图像。 如果需要,混合来源。 控制结构用于提供图像上下文并识别跨度的来源。 控制结构包括来自每个跨度的每个源的每个数据流的头部。 此外,通过减少图像合成时发生的色彩空间转换次数,可以提高图像的色彩质量。 在与其他颜色空间的源混合之前,将相同颜色空间中的所有来源混合。 优选地,不需要单独的颜色转换。
    • 9. 发明授权
    • Media stream synchronization
    • 媒体流同步
    • US07088774B1
    • 2006-08-08
    • US10158536
    • 2002-05-29
    • Shankar MoniAnkur VarmaJohn Allen Tardif
    • Shankar MoniAnkur VarmaJohn Allen Tardif
    • H04N7/12
    • H04N21/44004H04N21/4307H04N21/4788
    • A system and method of synchronizing a media stream involves determining urgency measures and favorability measures. An urgency measure relates to a degree by which a media stream is currently out of synchronization. A favorability measure indicates the disruptiveness or likely noticeability altering the media stream at a particular temporal point. As a media stream becomes more and more out of synchronization, the urgency factor increases, and the system looks for places in the media stream at which units such as video frames or audio samples can be added or subtracted to re-achieve synchronization. When the urgency measure is at lower values, the system selects only points in the media stream having relatively high favorability measures. When the urgency measure increases, the system selects points having relatively lower favorability measures.
    • 一种同步媒体流的系统和方法包括确定紧急措施和有利度量措施。 紧急措施涉及媒体流当前不同步的程度。 优惠措施表明在特定时间点上的媒体流的破坏性或可能的注意力改变。 随着媒体流变得越来越不同步,紧急因素增加,并且系统寻找媒体流中可以添加或减少诸如视频帧或音频样本的单元以重新实现同步的位置。 当紧急措施处于较低值时,系统仅选择媒体流中具有较高适应度度量的点。 当紧急措施增加时,系统选择具有较低优惠措施的点。