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    • 11. 发明申请
    • SYSTEM AND METHOD FOR DISPLAYING SELECTED INFORMATION TO A PERSON UNDERTAKING EXERCISES
    • 显示选择的信息给个人行为的系统和方法
    • US20110072457A1
    • 2011-03-24
    • US12673791
    • 2008-08-20
    • Gerd LanfermannKlaus WeidenhauptRichard D. Willamnn
    • Gerd LanfermannKlaus WeidenhauptRichard D. Willamnn
    • H04N7/025
    • A63B24/0006A63B71/0622A63B2024/0012A63B2024/0015A63B2071/0647A63B2220/803A63B2230/62G06Q30/00
    • The present invention relates to a system for displaying selected information to a person undertaking exercises comprising a physical data assessment unit (1), a physical data gathering unit (2), a motion template database (4); the physical data gathering unit (2) and the motion template database (4) being in communication with the physical data assessment unit (1); the system further comprises an impairment profile generator (5), an information database (6) comprising audiovisual information to be displayed to the person according to the impairment profile; an audiovisual display unit (7); the information database (6) and the audiovisual display unit are in communication with the impairment profile generator (5) and the impairment profile generator (5) is in communication with the physical data assessment unit (1). According to the impairment profile, information such as advertisements is displayed on display (7) to the person. The invention furthermore relates to a method for displaying selected information to a person undertaking exercises. In preferred embodiments, the selection rules are based on Bayesian inference.
    • 本发明涉及一种用于向参与运动的人显示所选择的信息的系统,包括物理数据评估单元(1),物理数据采集单元(2),运动模板数据库(4)。 物理数据收集单元(2)和运动模板数据库(4)与物理数据评估单元(1)通信; 所述系统进一步包括损伤简档生成器(5),包括根据所述损伤简档向所述人显示的视听信息的信息数据库(6) 视听显示单元(7); 所述信息数据库(6)和所述图像声音显示单元与所述损伤曲线生成器(5)通信,所述损伤曲线发生器(5)与所述物理数据评估单元(1)通信。 根据损伤情况,在显示器(7)上显示广告等信息。 本发明还涉及一种将选择的信息显示给进行锻炼的人的方法。 在优选实施例中,选择规则基于贝叶斯推理。
    • 13. 发明申请
    • SYSTEM AND METHOD FOR AUTOMATIC SENSOR POSITION RECOGNITION
    • 用于自动传感器位置识别的系统和方法
    • US20100188231A1
    • 2010-07-29
    • US12669841
    • 2008-07-22
    • Stefan WinterJuergen Te VrugtRichard Daniel WillmannGerd LanfermannEdwin Geradus Johannus Maria Bongers
    • Stefan WinterJuergen Te VrugtRichard Daniel WillmannGerd LanfermannEdwin Geradus Johannus Maria Bongers
    • G08B23/00G08B21/00
    • A61B5/00A61B5/0402A61B5/0488A61B5/061A61B5/11A61B90/90A61B90/96A61B90/98A61B2090/395
    • The present invention relates to an automatic sensor position recognition system comprising: a position recognition unit (1) located at pre-determined positions on a person's body and bearing a unique identification; a sensor (2) bearing a unique identification; a communication unit (3) assigned to the sensor and being in communication with the position recognition unit (1) and the sensor (2); a data processing unit (4) in communication with the communication unit; and a database (5) being in communication with the data processing system (4) and comprising the correlation of the unique identification of the position recognition unit (1) and the pre-determined position of the position recognition unit (1). The system according to the invention provides an automatic association between sensors and body segments as well as means to obtain these associations. As a result, no human interaction is required any more to assign a body segment to a sensor. Thus, assignment errors can be prevented and the patient is not burdened any more with attaching a particular sensor to a specific body segment and can concentrate more on the exercises he is supposed to undertake.
    • 自动传感器位置识别系统技术领域本发明涉及一种自动传感器位置识别系统,包括:位置识别单元(1),其位于人体身体的预定位置并具有唯一的识别; 具有唯一识别的传感器(2); 分配给传感器并与位置识别单元(1)和传感器(2)通信的通信单元(3); 与通信单元通信的数据处理单元(4); 以及与数据处理系统(4)通信并且包括位置识别单元(1)的唯一标识与位置识别单元(1)的预定位置的相关性的数据库(5)。 根据本发明的系统提供了传感器和身体段之间的自动关联以及获得这些关联的手段。 因此,不需要任何人工交互来将身体段分配给传感器。 因此,可以防止分配错误,并且通过将特定传感器附接到特定身体部分并且可以更多地集中在他应该承担的锻炼上,患者不再负担。
    • 20. 发明授权
    • Method of calibrating an air sensor
    • 校准空气传感器的方法
    • US09347925B2
    • 2016-05-24
    • US13881957
    • 2011-10-28
    • Fangzhong ShenHong ZhangGerd Lanfermann
    • Fangzhong ShenHong ZhangGerd Lanfermann
    • G01N33/00B01D53/30B60H1/00F24F3/16
    • G01N33/0006B01D53/30B01D2258/06B01D2259/4566B60H1/008F24F3/1603
    • One embodiment of the invention provides an air treatment device. The air treatment device comprises: an air purifying unit, configured to purify air; an air sensor, configured to measure a first air quantity and provide a measurement output, wherein the first air quantity comprises the purified air purified by the air purifying unit; and a processor, configured to generate a first value based on the measurement output of the air sensor so as to calibrate the air sensor. With the air treatment device of one embodiment of the invention, clean air, i.e. zero air, is generated locally by the air treatment device so as to calibrate the air sensor, without the need for externally generating the zero air, which brings convenience for the user or other operators performing calibration of the air sensor of the air treatment device. Another embodiment of the invention also provides a method of calibrating an air sensor of an air treatment device. The method comprises the steps of: purifying air by using the air treatment device; and measuring a first air quantity by using the air sensor to get a first value so as to calibrate the air sensor, wherein the first air quantity comprises the purified air.
    • 本发明的一个实施例提供一种空气处理装置。 空气处理装置包括:空气净化单元,其构造成净化空气; 空气传感器,被配置为测量第一空气量并提供测量输出,其中所述第一空气量包括由所述空气净化单元净化的净化空气; 以及处理器,被配置为基于所述空气传感器的测量输出产生第一值,以校准所述空气传感器。 利用本发明的一个实施例的空气处理装置,由空气处理装置局部地产生清洁空气即零空气,以校准空气传感器,而不需要外部产生零空气,这为 用户或其他操作者执行空气处理装置的空气传感器的校准。 本发明的另一个实施例还提供了一种校准空气处理装置的空气传感器的方法。 该方法包括以下步骤:使用空气处理装置净化空气; 以及通过使用所述空气传感器来测量第一空气量以获得第一值以校准所述空气传感器,其中所述第一空气量包括所述净化空气。