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    • 1. 发明授权
    • Method and system for communicating information and controlling equipment according to a standard protocol between two computers
    • 在两台计算机之间根据标准协议传送信息和控制设备的方法和系统
    • US07003558B2
    • 2006-02-21
    • US09419239
    • 1999-10-15
    • Russell L. AgrusaJan BurianRobert A. Braier
    • Russell L. AgrusaJan BurianRobert A. Braier
    • G06F15/173
    • G05B19/4186G05B19/4185G05B2219/31208G05B2219/34263G05B2219/34488Y02P90/185
    • A system for communicating according to a standard communication protocol for process control includes a plurality of interconnected computers. The system includes a module that permits communication of information between computers that communicate with process control equipment. The system also includes a module that permits a primary controlling machine to communicate with computers that communicate with process control equipment, and that permits a secondary controlling machine to take the place of the primary controlling machine when the primary controlling machine is unavailable. The system further includes a module that aggregates requests for information directed to one computer that communicates with a piece of process control equipment, communicates with the computer and obtains the information, and delivers the information to each of the requesters. The standard communication protocol for process control can be OPC, and the communicated information can be one or more process control parameters.
    • 根据用于过程控制的标准通信协议进行通信的系统包括多个互连的计算机。 该系统包括允许在与过程控制设备通信的计算机之间进行信息通信的模块。 该系统还包括允许主控制机器与与过程控制设备通信的计算机通信的模块,并且当主控制机器不可用时允许辅助控制机器代替主控制机器。 该系统还包括一个模块,该模块聚合针对与一个过程控制设备进行通信的一台计算机的信息请求,与计算机通信并获得该信息,并将该信息传递给每个请求者。 用于过程控制的标准通信协议可以是OPC,所传送的信息可以是一个或多个过程控制参数。
    • 2. 发明授权
    • Exercise devices with force sensors
    • 带力传感器的运动装置
    • US08491446B2
    • 2013-07-23
    • US13498012
    • 2010-10-01
    • Robert S. HindsRobert A. BraierJohn Stephenson
    • Robert S. HindsRobert A. BraierJohn Stephenson
    • A63B24/00
    • A61B5/224A61B5/0002A63B21/0055A63B21/0552A63B21/0557A63B21/4017A63B21/4021A63B21/4035A63B24/0062A63B2071/0625A63B2071/0627A63B2071/063A63B2071/0655A63B2220/51A63B2225/20A63B2225/50A63B2230/06A63B2230/75
    • An exemplary exercise device includes a handheld force sensor with complementary male and female connectors extending from opposite sides thereof. The force sensor senses pulling and/or pushing forces exerted between the opposing sides. The male connector may be resistant to travel through the female connector except in limited orientations. The connectors allow the exercise device to interface with any mobile or immobile device having complementary connectors. Non-complementary connectors can connect with the exercise device through a body passage. Depending on devices interfaced with the exercise device, force readings can be taken during a vast variety of motions using different muscle groups during training, exercise, and rehabilitation/physical therapy in homes, schools, healthcare facilities, health clubs, etc. Force readings from the force sensor may be communicated via wired and/or wireless technologies to other devices for live (real-time) processing and display as well as additional historical analysis and reporting.
    • 示例性的运动装置包括具有从其相对侧延伸的互补的阳和阴连接器的手持式力传感器。 力传感器感测施加在相对侧之间的拉力和/或推力。 除了有限的方向之外,公连接器可以抵抗通过母连接器的行进。 连接器允许锻炼装置与具有互补连接器的任何移动或不动装置连接。 非互补连接器可以通过身体通道与运动装置连接。 根据与运动装置连接的装置,在家庭,学校,保健机构,健康俱乐部等的训练,运动和康复/物理治疗期间,在使用不同的肌肉群的各种运动中可以采取强制读数。 力传感器可以通过有线和/或无线技术传送到其他设备进行实时(实时)处理和显示,以及附加的历史分析和报告。
    • 3. 发明授权
    • Method and apparatus for detecting and identifying microbial colonies
    • 用于检测和鉴定微生物菌落的方法和装置
    • US5694478A
    • 1997-12-02
    • US356484
    • 1994-12-15
    • Robert A. BraierScott D. Morgan
    • Robert A. BraierScott D. Morgan
    • C12M1/34C12Q1/04C12Q1/06G06K9/00
    • C12Q1/06C12M41/36C12Q1/04Y10S435/808
    • A method and system for detecting and identifying microbial colonies in an inoculated growth medium first acquires a first image of the inoculated growth medium. After a selected incubation time interval, a second image of the growth medium is acquired. A difference image is produced by taking the difference between corresponding pixels in the first and second images. Potential colonies are identified within the difference image by locating peak pixels having local maximum pixel intensities within the difference image and having decreasing gradients in a predetermined number of directions. The potential colonies are validated as actual colonies by eliminating those potential colonies that are noise spikes or noise around previously validated colonies.
    • 用于检测和鉴定接种的生长培养基中的微生物菌落的方法和系统首先获取接种的生长培养基的第一图像。 在选择的孵育时间间隔之后,获取生长培养基的第二个图像。 通过取第一和第二图像中的对应像素之间的差异来产生差异图像。 通过将具有局部最大像素强度的峰像素定位在差分图像内并且在预定数量的方向上具有降低的梯度,在差异图像内识别潜在的菌落。 潜在的殖民地通过消除那些潜在的殖民地被认为是实际的殖民地,这些殖民地是先前验证的殖民地的噪音尖峰或噪音。