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    • 2. 发明申请
    • SYSTEMS AND METHODS FOR HIGH RESOLUTION IMAGING
    • 用于高分辨率成像的系统和方法
    • US20100103300A1
    • 2010-04-29
    • US12605801
    • 2009-10-26
    • Peter W. J. JonesEllen CargillDennis W. Purcell
    • Peter W. J. JonesEllen CargillDennis W. Purcell
    • H04N5/335
    • H04N9/09H04N5/3415
    • The systems and methods described herein relate to high resolution imaging. In particular, the systems include two or more lens assemblies for imaging a particular scene. Each lens assembly has image sensors disposed behind the lens assembly to image only a portion of the scene viewable through the lens assembly. Image sensors behind different lens assemblies image different portions of the scene. When the imaged portions from all the sensors are combined, a high resolution image of the scene is formed. Thus, multiple sensors can be combined to generate a high resolution image without prospective mismatching, and without the shortcomings associated with the border regions and packaging of the individual sensors, such as image gaps.
    • 本文所述的系统和方法涉及高分辨率成像。 特别地,该系统包括用于对特定场景成像的两个或更多个透镜组件。 每个透镜组件具有设置在透镜组件后面的图像传感器,以仅图像通过透镜组件可视的场景的一部分。 不同镜头组件后面的图像传感器对场景的不同部分进行了图像处理。 当来自所有传感器的成像部分组合时,形成场景的高分辨率图像。 因此,可以组合多个传感器以产生高分辨率图像,而无需预先错配,并且不存在与边界区域相关联的缺点以及诸如图像间隙的各个传感器的封装。
    • 3. 发明授权
    • Optical devices and reflection control techniques
    • 光学设备和反射控制技术
    • US5745292A
    • 1998-04-28
    • US981877
    • 1992-11-25
    • Peter W. J. Jones
    • Peter W. J. Jones
    • G02B5/00G02B27/00G02B21/00
    • G02B5/003G02B27/0018
    • The present invention relates to improved optical devices and reflection control techniques. In one aspect, the invention provides an optical device comprising an array of substantially tubular elements and one or more reflective surfaces, wherein at least one of the reflective surfaces positioned behind the tubular elements is tilted with respect to the optical path of the device. This orientation of the reflective surface results in incident light from a source in the field of view of the device being reflected from the tilted surface and captured by the array of elements, rather than the reflected light being projected outward from the device where it can be perceived by a viewer, particularly a viewer in the field of view.
    • 本发明涉及改进的光学装置和反射控制技术。 在一个方面,本发明提供了一种光学装置,其包括基本上管状的元件阵列和一个或多个反射表面,其中位于管状元件之后的反射表面中的至少一个相对于器件的光路倾斜。 反射表面的这种取向导致来自设备的视场中的源的入射光从倾斜表面反射并被元件阵列捕获,而不是反射光从设备向外突出,在该位置处 由观看者,特别是视野中的观看者感知。
    • 6. 发明申请
    • DIGITAL SECURITY CAMERA
    • 数码相机
    • US20110234807A1
    • 2011-09-29
    • US13030960
    • 2011-02-18
    • Peter W. J. JonesEllen CargillDennis W. Purcell
    • Peter W. J. JonesEllen CargillDennis W. Purcell
    • H04N7/18
    • H04N5/235G08B13/19641G08B13/19693H04N5/2258H04N5/23232H04N5/23238H04N5/247H04N5/262H04N5/2624H04N5/3415H04N7/181
    • The systems and methods described herein provide imaging systems for imaging a scene. The imaging system includes an optical head, a processor, and an analog communication port. The processor receives captured digital image data from the optical head. The processor sends the image data to the analog communication port to generate an analog video stream that is protocol compatible with typical closed-circuit television (CCTV) networks, such as PAL or NTSC. The imaging system has a physical interface that allows the system to plug into a conventional CCTV network. To generate a video stream that is protocol compatible with the CCTV network, the analog communication port may down sample the digital image data to generate a PAL or NTSC compatible image. The down sampled digital image data is converted to a compliant analog signal and delivered over the physical layer of the CCTV network for display on a conventional television monitor.
    • 本文描述的系统和方法提供用于对场景成像的成像系统。 成像系统包括光学头,处理器和模拟通信端口。 处理器从光学头接收捕获的数字图像数据。 处理器将图像数据发送到模拟通信端口,以生成与典型的闭路电视(CCTV)网络(例如PAL或NTSC)协议兼容的模拟视频流。 成像系统具有允许系统插入常规CCTV网络的物理接口。 为了产生与CCTV网络协议兼容的视频流,模拟通信端口可能会对数字图像数据进行采样,以产生PAL或NTSC兼容的图像。 下采样的数字图像数据被转换为兼容的模拟信号,并在CCTV网络的物理层上传送以便在传统的电视监视器上显示。
    • 10. 发明申请
    • SYSTEMS AND METHODS FOR AN INTELLIGENT ENERGY-SAVING POWER SUPPLY
    • 智能节能电源的系统和方法
    • US20110248576A1
    • 2011-10-13
    • US13022852
    • 2011-02-08
    • Peter W. J. Jones
    • Peter W. J. Jones
    • H01H47/00G05B11/01
    • H02J7/0036Y10T307/826
    • The systems and methods described herein include an intelligent energy-saving power supply system which conserves energy by recognizing when a chargeable electronic device, such as a cellular telephone, has been detached from its battery charger and by then cutting off power to the battery charger to prevent energy from being consumed while not serving the useful function of charging the chargeable electronic device. In addition, these systems may optionally include a device which turns off the receiver circuit of an electronic device to additionally save power and an interface which displays the amount of energy conserved by using the energy-saving power supply system.
    • 本文所述的系统和方法包括智能节能电源系统,其通过识别何时将可充电电子设备(例如蜂窝电话)从其电池充电器分离出来,然后切断对电池充电器的电力来节省能量 防止能量消耗而不服务于对可计费电子设备充电的有用功能。 此外,这些系统可以可选地包括关闭电子设备的接收器电路以另外节省电力的设备以及显示通过使用节能电源系统节约的能量的接口。