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    • 4. 发明授权
    • Flexible multi-moduled nanoparticle-structured sensor array on polymer substrate and methods for manufacture
    • 聚合物基体上的多模多元纳米颗粒结构传感器阵列和制造方法
    • US09080942B2
    • 2015-07-14
    • US13325978
    • 2011-12-14
    • Chuan-Jian ZhongJin LuoLingyan WangJun YinSusan Lu
    • Chuan-Jian ZhongJin LuoLingyan WangJun YinSusan Lu
    • G01N15/06G01N33/00G01N33/48G01N27/12B82Y15/00B82Y30/00
    • G01N27/127B05D1/26B05D1/28B82Y15/00B82Y30/00
    • A flexible chemiresistor (CR) sensor for sensing a molecule of interest in a fluid (liquid or gas) is provided. The flexible CR sensor comprises a flexible chemiresistor (CR) module. The flexible CR module comprises a flexible substrate such polyethylene terephthalate (PET), polyethylene naphthalate (PEN) or polyimide (PI), and a thin film nanoparticle assembly assembled on the flexible substrate. The thin film nanoparticle assembly comprises metal or metal alloy core, ligand-capped nanoparticles and molecular linkers connecting the nanoparticles. The flexible CR sensor and an intelligent pattern recognition engine can be incorporated in a handheld device that can detect a molecule of interest in a fluid (e.g., a liquid or gas) accurately, rapidly, and without false positives. Any sensing array nanomaterial, pattern recognition, and compact/or electronic hardware can be integrated to achieve a desired detection limit and response speed.
    • 提供了用于感测流体(液体或气体)中感兴趣的分子的柔性化学电阻(CR)传感器。 灵活的CR传感器包括灵活的化学电阻(CR)模块。 柔性CR模块包括柔性基底如聚对苯二甲酸乙二醇酯(PET),聚萘二甲酸乙二醇酯(PEN)或聚酰亚胺(PI))和组装在柔性基底上的薄膜纳米颗粒组件。 薄膜纳米颗粒组件包括金属或金属合金芯,配体封端的纳米颗粒和连接纳米颗粒的分子连接体。 灵活的CR传感器和智能模式识别引擎可以并入到能够精确,快速,无假阳性的情况下在流体(例如,液体或气体)中检测感兴趣的分子的手持设备中。 可以集成任何感测阵列纳米材料,图案识别和紧凑型或电子硬件,以实现期望的检测极限和响应速度。
    • 6. 发明授权
    • Contactless sensing and control system
    • 非接触感测系统
    • US09030303B2
    • 2015-05-12
    • US13435988
    • 2012-03-30
    • William Jay Hotaling
    • William Jay Hotaling
    • G08C19/12G08C17/02G01S5/08G08C23/04
    • G08C17/02G01S5/08G08C23/04
    • This disclosure describes embodiments of a contactless sensing system for controlling operation of a remote device. The sensing system can comprise an actuator and a sensing device, which is responsive to a field the actuator emits. An end user can move the actuator relative to the sensing device to generate an output that reflects a device command that modifies operation of the remote device. In one example, the sensing device comprises an array of sensing elements. The field causes a change in operating parameters in the sensing elements, which the sensing device can identify and associate with the device command. The sensing device can also recognize combinations of one or more of the sensing elements that exhibit changes in the operating parameters to provide a robust control mechanism for the remote device.
    • 本公开描述了用于控制远程设备的操作的非接触感测系统的实施例。 感测系统可以包括致动器和感测装置,其响应于致动器发出的场。 最终用户可以相对于感测装置移动致动器以产生反映修改远程设备的操作的设备命令的输出。 在一个示例中,感测装置包括感测元件阵列。 该场引起感测元件中的操作参数的改变,感测装置可识别并与设备命令相关联。 感测装置还可以识别表现出操作参数变化的一个或多个感测元件的组合,以为远程设备提供鲁棒的控制机构。
    • 8. 发明授权
    • System and method for leak detection
    • 泄漏检测系统和方法
    • US09025817B2
    • 2015-05-05
    • US13604162
    • 2012-09-05
    • Jonathan Patrick Knauth
    • Jonathan Patrick Knauth
    • G06K9/00G08B21/20
    • G06K9/00771G08B21/20
    • This disclosure describes embodiments of systems and methods that can identify and image leaks and spills while simultaneously viewing the unchanging background. In one embodiment, the system includes an image capture device and an image processing device, which receives a first image frame and a second image frame from the image capture device. The image processing device can identify a region of variation in the second image frame that corresponds to a change in a scene parameter (e.g., temperature) as between the first image frame and the second image frame. These embodiments provide a normal dynamic range thermal image that can be colorized to identify the leak or spill as the leak or spill develops over time. The systems and methods can minimize false alarms, addressing potential issues that arise in connection with meteorological events (e.g., precipitation), noise sources, and relative motion between the image capture device and the scene.
    • 本公开描述了可以识别和图像泄漏和泄漏的系统和方法的实施例,同时观察不变的背景。 在一个实施例中,系统包括图像捕获装置和图像处理装置,其从图像捕获装置接收第一图像帧和第二图像帧。 图像处理装置可以识别与第一图像帧和第二图像帧之间的场景参数(例如,温度)的变化相对应的第二图像帧中的变化区域。 这些实施例提供了正常的动态范围热图像,其可以被着色以识别泄漏或泄漏随着泄漏或溢出随时间而发展。 系统和方法可以最小化假警报,解决与气象事件(例如降水),噪声源以及图像捕捉设备和场景之间的相对运动相关的潜在问题。