会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 2. 发明专利
    • sistema de identificação e/ou monitoramento de veículo através de visão computacional e geolocalização
    • BR102018073080A2
    • 2020-05-19
    • BR102018073080
    • 2018-11-09
    • ANDRE SATORU KOMATSU
    • ANDRE SATORU KOMATSU
    • G08G1/00G08G1/017
    • sistema de identificação e/ou monitoramento de veículo através de visão computacional e geolocalização descrição operacional do sistema: (1) o ciclo do sistema inicia-se com o cadastramento do veículo e do(s) usuário(s) permitido(s) a trafegar com esse veículo e uma forma de pagamento no aplicativo de celular ou através de um site. (2) a partir daí a base de dados central atualiza a base de dados de cada unidade de processamento e o veículo estará autorizado a trafegar nos pontos de cobrança conveniados ao sistema. (3) ao passar por um ponto de cobrança, uma câmera acoplada a uma unidade de processamento realizará a identificação da placa, marca, modelo e cor do veículo, e cruzará com a informação mais recente de localização dos usuários cadastrados (que é atualizada em tempo real na base de dados central do sistema e repassada à unidade de processamento de forma remota). com base em análises estatísticas e através do cruzamento desses dados a unidade de processamento calculará a probabilidade de esse veículo ser um usuário legítimo e autorizado, realizando a liberação do veículo com base em uma determinada tolerância de risco de a leitura ser precisa ou não. a tolerância de risco será determinada de forma discricionária pela operadora do sistema. (4) os passos (1) e (3) geram atualizações na base de dados central do sistema, que periodicamente atualizará de forma remota cada unidade de processamento de cada ponto de cobrança, de forma a permitir uma operação atualizada em tempo real, seja para o operador quanto para o usuário, que receberá, a seu critério, atualizações de utilização do serviço. (5) apenas de forma ilustrativa, as formas de reconhecimento de imagens podem ser diversas, incluindo (mas sem restringindo a) códigos abertos como openalpr e opencv, tensorflow e yolo, assim como algoritmos fechados produzidos em diversas linguagens de programação.
    • 3. 发明申请
    • IMAGE PROCESSING APPARATUS, IMAGE PICKUP APPARATUS AND IMAGE PROCESSING METHOD
    • 图像处理装置,图像拾取装置和图像处理方法
    • US20130021495A1
    • 2013-01-24
    • US13551733
    • 2012-07-18
    • Kotaro IchiyamaSatoru Komatsu
    • Kotaro IchiyamaSatoru Komatsu
    • H04N9/73H04N5/225
    • H04N9/68H04N9/045
    • The image processing apparatus includes a gradient calculating part calculating intensity gradient at each pixel in a captured color image, a first color blur determining part determining that a pixel at which the intensity gradient satisfies a color blur condition using a first threshold is a possible color blur pixel, and a second color blur determining part detecting a saturated pixel in the color image, and determining, when a distance between the saturated pixel and the possible color blur pixel is within a second threshold, that the possible color blur pixel is a color blur pixel. The first and second color blur determining parts change the first and second thresholds depending on at least one of luminance and chroma of the possible color blur pixel.
    • 该图像处理装置包括:计算捕获的彩色图像中每个像素处的强度梯度的梯度计算部分,确定使用第一阈值强度梯度满足颜色模糊条件的像素是可能的颜色模糊的第一颜色模糊确定部分 像素,以及第二颜色模糊确定部分,其检测彩色图像中的饱和像素,以及当饱和像素和可能的颜色模糊像素之间的距离在第二阈值内时,确定可能的颜色模糊像素是颜色模糊 像素。 第一和第二颜色模糊确定部分根据可能的颜色模糊像素的亮度和色度中的至少一个来改变第一和第二阈值。
    • 5. 发明申请
    • ABERRATION MEASUREMENT METHOD AND SYSTEM INCLUDING INTERFEROMETER AND SIGNAL PROCESSING UNIT
    • ABERRATION测量方法和系统,包括干扰计和信号处理单元
    • US20110135145A1
    • 2011-06-09
    • US12961664
    • 2010-12-07
    • Yasuhiro SAWADASatoru KOMATSU
    • Yasuhiro SAWADASatoru KOMATSU
    • G06K9/00G01B9/02
    • G01M11/0271G01M11/0257
    • An aberration measurement system includes an interferometer that includes a polarization adjuster configured to adjust a polarization plane of coherent light, and a phase shifter configured to shift a phase of reference light. The aberration measurement system further includes a signal processing unit configured to obtain a nonpolarization aberration of the test object, and coefficients a=sin ε cos 2θ, b=sin ε sin 2θ, and c=cos ε for a retardation amount 2ε and a principal axis direction θ of a polarization aberration of the test object, based on data of a plurality of interference pattern images which provide at least three complex visibilities obtained from the interferometer after a polarization adjuster adjusts the polarization plane of the coherent light, and to determine signs of the coefficients a, b, and c based on the nonpolarization aberration.
    • 像差测量系统包括:干涉仪,其包括被配置为调整相干光的偏振面的偏振调节器,以及被配置为移动参考光的相位的移相器。 像差测量系统还包括被配置为获得测试对象的非极化像差的信号处理单元,并且系数a = sin&egr; cos 2&thetas; b = sin&egr; sin 2&thetas;和c = cos&egr; 延迟量2&egr; 主轴方向和主轴; 基于在偏振调节器调整相干光的偏振平面之后提供从干涉仪获得的至少三个复杂视差的多个干涉图案图像的数据,并且确定系数的符号,所述测试对象的偏振像差 基于非极化像差的a,b和c。
    • 7. 发明授权
    • Robot device
    • 机器人装置
    • US07738998B2
    • 2010-06-15
    • US10547026
    • 2004-11-04
    • Satoru KomatsuKazunori Matsumoto
    • Satoru KomatsuKazunori Matsumoto
    • G05B15/02B65G65/02G06F19/00
    • G05B19/4063G05B2219/50198Y10T307/944
    • Robot apparatus has a robot 1, a controller 2 for controlling the aforementioned robot 1 to perform working, and a plurality of external axis devices 4, 5 and 6 to be controlled by the aforementioned controller 2. The aforementioned external axis devices 4, 5 and 6 are provided with power switches 4b, 5b and 6b to be operated by an operator 9 so as to turn on/off power supplies thereto, and power supply circuits 4a, 5a and 6a to be operated from the aforementioned controller 2 so as to turn on/off the power supplies. Priority is given to operation using the aforementioned power switches 4b, 5b and 6b over operation from the aforementioned controller 2 as to turning off the power supplies to the external axis devices 4, 5 and 6.
    • 机器人装置具有机器人1,用于控制上述机器人1进行工作的控制器2和由上述控制器2控制的多个外部轴装置4,5,6。上述外部轴装置4,5和 6设置有由操作者9操作以供电的电源开关4b,5b和6b,以及从上述控制器2操作的电源电路4a,5a和6a,以便转动 开/关电源。 优先使用上述的电源开关4b,5b,6b通过上述的控制器2的操作来切断对外部轴装置4,5,6的电源的动作。
    • 8. 发明授权
    • In-vehicle antenna apparatus
    • 车载天线装置
    • US07489279B2
    • 2009-02-10
    • US11165438
    • 2005-06-23
    • Tomoki IkedaNaofumi ShiraishiMasashi NakagawaSatoru KomatsuTomoyuki FukumaruHideaki OshimaHiroshi Iijima
    • Tomoki IkedaNaofumi ShiraishiMasashi NakagawaSatoru KomatsuTomoyuki FukumaruHideaki OshimaHiroshi Iijima
    • H01Q1/32
    • H01Q1/40H01Q1/1271H01Q1/32
    • Rear glass is provided with a patch-like radiation conductor and a first ground conductor surrounding the patch-like radiation conductor. An electronic circuit unit includes a base plate fixed on the rear glass; a frame body which houses a circuit substrate and is fixed on the base plate; and a cover for covering the frame body. One surface of the circuit substrate defines a component-holding surface which is connected with a second end of a feeder cable connected with the radiation conductor and the first ground conductor. The other surface of the circuit substrate is provided with a second ground conductor to function as a radio-wave reflective surface. The radio-wave reflective surface faces the radiation conductor and the first ground conductor disposed on the rear glass such that the radio-wave reflective surface is separated from the radiation conductor and the first ground conductor by a predetermined distance.
    • 后玻璃设置有贴片状辐射导体和围绕贴片状辐射导体的第一接地导体。 电子电路单元包括固定在后玻璃上的基板; 框架体,其容纳电路基板并固定在基板上; 以及用于覆盖框架体的盖。 电路基板的一个表面限定了与辐射导体和第一接地导体连接的馈电电缆的第二端连接的部件保持表面。 电路基板的另一个表面设置有用作无线电波反射表面的第二接地导体。 无线电波反射表面面向辐射导体和布置在后玻璃上的第一接地导体,使得无线电波反射表面与辐射导体和第一接地导体分离预定距离。