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    • 43. 发明申请
    • HOME INTELLECTUAL POSITIONING SYSTEM
    • 首页知识定位系统
    • US20150310288A1
    • 2015-10-29
    • US14261438
    • 2014-04-25
    • Wen-Sung Lee
    • Wen-Sung Lee
    • G06K9/00
    • G08B13/181G08B13/1645
    • A home intellectual positioning system for use in a house, the system includes a power supply, a sound sensor, a thermal sensor, an identification unit and an intellectual processor. The sound sensor is provided for detecting and tracking a sonic wave of a home member to generate a sonic wave value. The thermal sensor is provided for detecting and tracking a body temperature of the home member to generate a body temperature value. The identification unit is provided for storing sonic wave information and body temperature information of a plurality of home members. The intellectual processor is interconnected to the identification unit, and to compare the sonic wave value of the sound sensor with the sonic wave information and the body temperature value of the thermal sensor with the body temperature information to identify which home member stays in the house.
    • 一种用于家庭的家庭智能定位系统,该系统包括电源,声音传感器,热传感器,识别单元和智能处理器。 提供声音传感器用于检测和跟踪家庭成员的声波以产生声波值。 热传感器用于检测和跟踪家庭成员的体温以产生体温值。 识别单元用于存储多个家庭成员的声波信息和体温信息。 智能处理器与识别单元互连,并将声音传感器的声波值与体温信息的声波信息和体温值进行比较,以识别哪个家庭成员停留在房屋中。
    • 44. 发明申请
    • ELECTRONIC SWITCH FOR CONTROLLING A DEVICE IN DEPENDENCY ON A SLEEP STAGE
    • 用于在睡眠阶段依赖控制设备的电子开关
    • US20150302722A1
    • 2015-10-22
    • US14435319
    • 2013-11-04
    • KONINKLIJKE PHILIPS N.V.
    • IGOR BEREZHNYYPEDRO MIGUEL FONSECAADRIENNE HEINRICHREINDER HAAKMA
    • G08B21/06G08B13/181A61B5/04A61B5/00G04G13/02A61B5/0476
    • G08B21/06A61B5/02405A61B5/04012A61B5/0476A61B5/0816A61B5/1118A61B5/4809A61B5/4812A61B5/6892A61B5/7264A61B2562/0247A61M21/00A61M2021/0027A61M2021/0044A61M2021/0083A61M2205/3331A61M2205/502A61M2205/584A61M2230/06A61M2230/10A61M2230/42A61M2230/63G04G13/02G04G13/021G04G13/025G08B13/181
    • An electronic switch for controlling a device (170) by switching a function of the device at least in dependency on a sleep stage of a human, the switch comprising an EEG data interface configured to receive brain activity data from an EEG sensor (120) configured to monitor electrical activity of the brain of the human during a training phase, an EEG sleep classifier (125) configured to classify sleep stages of the human from the received brain activity data, a body data interface configured to receive body activity data from an alternative sensor (30) configured to monitor a bodily function of the human both during the training phase and during a subsequent usage phase, the alternative sensor being different from the EEG sensor, an alternative sleep classifier (135) and a machine learning system (140), the machine learning system being configured to train the alternative sleep classifier (135) to classify a sleep stage of the human from the received body activity data, the learning system using sleep stages classified by the EEG sleep classifier (125) and concurrent body activity data received from the alternative sensor as training data, wherein in the usage phase the device (170) is controlled in dependency on sleep stages of the human classified by the alternative sleep classifier (135), and control logic (150) configured to at least determine that the classified sleep stage is one of a set of particular sleep stages and to switch a function of the device at least in dependency on said determination.
    • 一种电子开关,用于通过至少依赖于人的睡眠阶段来切换所述设备的功能来控制设备(170),所述开关包括被配置为从配置的脑电图传感器(120)接收大脑活动数据的EEG数据接口 监测在训练阶段期间人的大脑的电活动; EEG睡眠分类器(125),被配置为从接收到的大脑活动数据对人类的睡眠阶段进行分类;身体数据接口,被配置为从替代物接收身体活动数据 传感器(30)被配置为在训练阶段期间和在后续使用阶段期间监视人的身体功能,所述替代传感器与EEG传感器不同,替代睡眠分类器(135)和机器学习系统(140) 所述机器学习系统被配置为训练所述替代睡眠分类器(135)以从所接收的身体活动数据中分类人类的睡眠阶段,所述学习系统 使用由EEG睡眠分类器(125)分类的睡眠阶段的干细胞和从备选传感器接收的并发身体活动数据作为训练数据,其中在使用阶段中,根据由所述人类分类的人的睡眠阶段来控制所述装置(170) 替代睡眠分类器(135)和控制逻辑(150),其被配置为至少确定分类的睡眠阶段是一组特定睡眠阶段中的一个,并且至少依赖于所述确定来切换设备的功能。
    • 45. 发明申请
    • MONITORING SYSTEM
    • 监视系统
    • US20140184416A1
    • 2014-07-03
    • US14134255
    • 2013-12-19
    • HON HAI PRECISION INDUSTRY CO., LTD.HONG FU JIN PRECISION INDUSTRY (Shenzhen) CO., LTD
    • MENG-LIANG YANG
    • G08B21/18
    • G08B13/08G06F21/86G08B13/181
    • A monitoring system includes a reflection device, a light source, a receiver, a light conversion device, a processor, and an indication unit. The reflection device is located on an inner surface of a cover, and the light source and the receiver are located on a shell. When the cover covers the shell, light emitted from the light source can reach the reflection device and be reflected onto the receiver. When the cover is open, light emitted from the light source cannot reach the reflection device and is not reflected onto the receiver. The light conversion device converts light received by the receiver into electrical signals. The processor receives the electrical signals and outputs a control signal to the indication unit when the electrical signals are not received. The indication unit is connected to the processor and indicates that the cover is open upon receiving the control signal.
    • 监视系统包括反射装置,光源,接收器,光转换装置,处理器和指示单元。 反射装置位于盖的内表面上,光源和接收器位于外壳上。 当盖子覆盖壳体时,从光源发出的光线可以到达反射装置并被反射到接收器上。 当盖打开时,从光源发出的光不能到达反射装置,并且不会反射到接收器上。 光转换装置将由接收器接收的光转换为电信号。 当没有接收到电信号时,处理器接收电信号并向指示单元输出控制信号。 指示单元连接到处理器,并指示盖子在接收到控制信号时打开。
    • 46. 发明授权
    • Security system using LADAR-based sensors
    • 使用基于LADAR的传感器的安全系统
    • US08294881B2
    • 2012-10-23
    • US12198678
    • 2008-08-26
    • Dean R. HellicksonKurt HolmquistJames CookAndrew W. GuyetteRobert Burns
    • Dean R. HellicksonKurt HolmquistJames CookAndrew W. GuyetteRobert Burns
    • G01C3/08
    • G01S17/023G01S7/4802G01S17/42G01S17/89G01S19/13G08B13/181G08B13/19645
    • A security sensor system comprises one or more laser detection and ranging (LADAR) sensors configured for accumulation of three-dimensional image data. In one embodiment, the one or more LADAR sensors each comprise a LADAR device, such as a MEMS device, configured to transmit a plurality of laser pulses, and a microprocessor operatively coupled to the LADAR device. One or more data storage devices is operatively coupled to the microprocessor and configured to store the three-dimensional image data, as well as predetermined protected area boundary and fixed object definitions. A GPS receiver can be operatively coupled to the microprocessor and a GPS antenna. The microprocessor is configured to perform a LADAR image analysis that compares the three-dimensional image data with the protected area boundary and fixed object definitions to identify one or more potential intruders.
    • 安全传感器系统包括被配置用于累积三维图像数据的一个或多个激光检测和测距(LADAR)传感器。 在一个实施例中,一个或多个LADAR传感器各自包括被配置为传输多个激光脉冲的LADAR装置,诸如MEMS装置,以及可操作地耦合到LADAR装置的微处理器。 一个或多个数据存储设备可操作地耦合到微处理器并被配置为存储三维图像数据以及预定的保护区域边界和固定对象定义。 GPS接收机可以可操作地耦合到微处理器和GPS天线。 微处理器被配置为执行将三维图像数据与保护区边界和固定对象定义进行比较的LADAR图像分析,以识别一个或多个潜在入侵者。
    • 47. 发明申请
    • INTRUSION DETECTION SYSTEM AND SENSOR DEVICE THEREOF
    • 侵入检测系统及其传感器装置
    • US20110234404A1
    • 2011-09-29
    • US12851961
    • 2010-08-06
    • Akihiro ToyoharaKeisuke Morita
    • Akihiro ToyoharaKeisuke Morita
    • G08B13/18
    • G08B13/187G08B13/181
    • A intrusion detection system includes a first sensor device having a first transmission circuit unit that transmits a modulation wave of a first transmission spectrum diffusion signal to a first transmission leakage transfer passage and a second sensor device having a second transmission circuit unit that transmits a modulation wave of a second transmission spectrum diffusion signal to a second transmission leakage transfer passage. The signal interval of the first transmission spectrum diffusion signal is the same as the signal interval of the second transmission spectrum diffusion signal. The first transmission spectrum diffusion signal and the second transmission spectrum diffusion signal are shifted in frequency so that the first transmission spectrum diffusion signal does not overlap with the second transmission spectrum diffusion signal.
    • 入侵检测系统包括具有第一传输电路单元的第一传感器设备,该第一传输电路单元将第一传输频谱扩散信号的调制波传输到第一传输泄漏传送通道,以及具有传输调制波的第二传输电路单元的第二传感器设备 第二传输频谱扩散信号传送到第二传输泄漏传送通道。 第一透射光谱扩散信号的信号间隔与第二透射光谱扩散信号的信号间隔相同。 第一透射光谱扩散信号和第二透射光谱扩散信号的频率偏移,使得第一透射光谱扩散信号不与第二透射光谱扩散信号重叠。
    • 48. 发明申请
    • INTRUSION WARNING SYSTEM
    • 入侵警告系统
    • US20110043806A1
    • 2011-02-24
    • US12988321
    • 2009-04-16
    • Avishay GuettaDoron KorngutGil Blai
    • Avishay GuettaDoron KorngutGil Blai
    • G01N21/00
    • G08B13/2491G01S17/026G08B13/181
    • A system for detecting intrusion across a surface, comprising a plurality of light sources projecting an array of illuminating beams along different optical paths in the surface and a detector array system directed such that it detects along a plurality of fields of view in the surface, illumination reflected from the illuminating beams. A signal processing system detects changes along the array of fields of view, in the reflected illumination level detected by the detector system. An increase greater than a predefined level in the reflected illumination level from any field of view provides an indication of an intrusion across the surveilled surface along that field of view, at the crossing point of the direction of that field of view with the optical path whose illuminating beam generated the increase in reflected illumination from that field of view.
    • 一种用于检测跨越表面的入侵的系统,包括多个光源,所述多个光源沿着所述表面中的不同光路投射照明光束的阵列;以及探测器阵列系统,其被指示为沿着所述表面中的多个视野检测照明 从照明光束反射。 信号处理系统在由检测器系统检测到的反射照明水平中检测沿视场阵列的变化。 在任何视野的反射照明水平上大于预定水平的增加提供了沿着该视场在该视野方向的交叉点处与沿着该视野的观察点的入射表面的入射指示, 照明光束从该视野产生反射照明的增加。
    • 50. 发明授权
    • Laser area sensor
    • 激光区域传感器
    • US07760336B2
    • 2010-07-20
    • US12289245
    • 2008-10-23
    • Masashi Iwasawa
    • Masashi Iwasawa
    • G01C3/08
    • G01S17/42G01S7/4802G01S7/4808G01S7/487G01S7/4876G01S17/026G08B13/181
    • One embodiment includes: A laser range finder that obtains a distance to an object and a light-reception level of reflected light: a scanning mechanism that changes the measurement direction; a data acquiring portion that periodically performs measurement while changing the measurement direction; a data correcting portion that removes distance information of a portion corresponding to a discontinuous change and corrects light-reception level information of a portion that does not correspond to the discontinuous change after the obtained distance information and light-reception level information are compared with distance information and light-reception level information of preceding and succeeding measurement periods in each direction; a human body judging portion that extracts a portion that is presumed to correspond to a human body, and judges whether or not the extracted portion matches a human body based on a time-series moving status of the extracted portion; and an alert output control portion.
    • 一个实施例包括:获得与物体的距离和反射光的光接收电平的激光测距仪:改变测量方向的扫描机构; 数据获取部,其在改变测量方向的同时周期性地进行测量; 将获得的距离信息和光接收电平信息与距离信息进行比较之后,去除与不连续变化相对应的部分的距离信息并校正与不连续变化不对应的部分的光接收电平信息的数据校正部分 以及每个方向上前后测量周期的光接收电平信息; 人体判断部分,提取被推定为对应于人体的部分,并且基于所提取的部分的时间序列移动状态来判断所提取的部分是否与人体相匹配; 和报警输出控制部分。