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    • 1. 发明申请
    • METHOD AND SYSTEM FOR BLOCKING HAZARDOUS INFORMATION
    • 阻塞危险信息的方法和系统
    • US20090089829A1
    • 2009-04-02
    • US11948590
    • 2007-11-30
    • Sun Woo ParkYoung Hun KimIn-Won KangTaeyong ParkSungtack Byun
    • Sun Woo ParkYoung Hun KimIn-Won KangTaeyong ParkSungtack Byun
    • H04N7/16
    • H04L51/12G06Q10/107
    • A method for blocking objectionable information on a terminal. The method includes receiving header information corresponding to a particular multimedia content, extracting grade information from the header, determining if the extracted grade information is an allowable grade indicating that the particular multimedia content can be received by the terminal, receiving the particular multimedia content if the determining step determines the extracted grade information is the allowable grade, comparing the received multimedia content with objectionable information determination data stored in the terminal to determine if the multimedia content is objectionable, and assigning an objectionable grade to the header of the multimedia content when the comparing step determines the received multimedia content is objectionable.
    • 一种在终端上屏蔽令人反感的信息的方法。 该方法包括接收对应于特定多媒体内容的标题信息,从标题中提取成绩信息,确定所提取的成绩信息是否是表示特定多媒体内容可被终端接收的允许等级,如果 确定步骤确定所提取的等级信息是允许等级,将接收的多媒体内容与存储在终端中的不良信息确定数据进行比较,以确定多媒体内容是否令人不快,并且当比较时将多个内容的头部分配给令人讨厌的等级 步骤确定收到的多媒体内容是令人反感的。
    • 3. 发明授权
    • Method and system for blocking hazardous information
    • 阻止危险信息的方法和系统
    • US08713596B2
    • 2014-04-29
    • US11948590
    • 2007-11-30
    • Sun Woo ParkYoung Hun KimIn-Won KangTaeyong ParkSungtack Byun
    • Sun Woo ParkYoung Hun KimIn-Won KangTaeyong ParkSungtack Byun
    • H04N7/16
    • H04L51/12G06Q10/107
    • A method for blocking objectionable information on a terminal. The method includes receiving header information corresponding to a particular multimedia content, extracting grade information from the header, determining if the extracted grade information is an allowable grade indicating that the particular multimedia content can be received by the terminal, receiving the particular multimedia content if the determining step determines the extracted grade information is the allowable grade, comparing the received multimedia content with objectionable information determination data stored in the terminal to determine if the multimedia content is objectionable, and assigning an objectionable grade to the header of the multimedia content when the comparing step determines the received multimedia content is objectionable.
    • 一种在终端上屏蔽令人反感的信息的方法。 该方法包括接收对应于特定多媒体内容的标题信息,从标题中提取成绩信息,确定所提取的成绩信息是否是表示特定多媒体内容可被终端接收的允许等级,如果 确定步骤确定所提取的等级信息是允许等级,将接收的多媒体内容与存储在终端中的不良信息确定数据进行比较,以确定多媒体内容是否令人不快,并且当比较时将多个内容的头部分配给令人讨厌的等级 步骤确定收到的多媒体内容是令人反感的。
    • 6. 发明授权
    • Determining an amount of charge in a battery based on voltage and portable device having the same
    • 基于电压和具有相同的便携设备确定电池中的电量
    • US07710074B2
    • 2010-05-04
    • US11531243
    • 2006-09-12
    • Young Hoon KimSun Woo Park
    • Young Hoon KimSun Woo Park
    • H02J7/00
    • H02J7/0047H02J2007/005
    • Residual charge in a battery is measured based on a discharge voltage from the battery. A device for measuring the residual charge in the battery includes a fluctuation width amplifier configured to amplify a fluctuation width of a discharge voltage from the battery in excess of a threshold voltage. The device includes a display module configured to display the discharge voltage amplified by the fluctuation width amplifier. The discharge voltage amplified by the fluctuation width amplifier corresponds to the residual charge in the battery. The residual charge in the battery may be determined based on the discharge voltage and the application load data due to an operative application program.
    • 基于来自电池的放电电压来测量电池中的残留电量。 用于测量电池中剩余电荷的装置包括波动宽度放大器,其被配置为放大超过阈值电压的电池的放电电压的波动宽度。 该装置包括:显示模块,被配置为显示由波动宽度放大器放大的放电电压。 由波动宽度放大器放大的放电电压对应于电池中的剩余电荷。 电池中的剩余电量可以基于由于操作的应用程序引起的放电电压和应用负载数据来确定。
    • 8. 发明申请
    • ACTIVE ROBOTIC GAIT-TRAINING SYSTEM AND METHOD
    • 主动机器人训练系统及方法
    • US20140094345A1
    • 2014-04-03
    • US14007340
    • 2012-04-09
    • Young Ho KimSung Jae HwangJong Sang SonJung Yoon KimSun Woo ParkJe Seong RyuMin Hyeon Lee
    • Young Ho KimSung Jae HwangJong Sang SonJung Yoon KimSun Woo ParkJe Seong RyuMin Hyeon Lee
    • A61H1/02A63B71/00A63B22/02
    • A61H1/0255A61H1/0262A61H2201/10A61H2201/163A61H2201/1642A61H2201/5069A61N1/36003A61N1/36014A63B21/00178A63B21/00181A63B21/4009A63B21/4011A63B22/0235A63B69/0064A63B71/0009A63B2022/0094A63B2213/004A63B2220/16
    • The present invention relates to active robotic gait training system and method which enables more active gait training based on remaining gait ability of patients with gait disorders by estimating the gait cycle through measurement of slope of the lower leg, operating the hip joint and the knee joint by an actuator depending on the gait cycle and operating the ankle joint by functional electric stimulation (FES).The robotic gait training system contains the femoral support unit, the hip joint support unit and the lower leg support unit. Also, The robotic gait training system has further comprising: a support fixing toe tip, located on the lower part of the lower leg support unit and fixed the strap connecting to the toe tip pad wrapping the toe tip (forefoot); a tilt sensor, installed on the lower part of lower leg support unit or on one side of the toe tip pad; the control unit generated FES control signal, hip joint angle control signal and knee joint angle control signal by using slope signal received from the tilt sensor; a first linear actuator operation unit, received the hip joint angle control signal from the control unit and operates the first linear actuator to rotate the femoral support unit based on the hip joint angle control signal in the hip joint unit that is the coupling unit between the femoral support unit and the hip joint support unit; a second linear actuator operation unit, received the knee joint angle control signal from the control unit and operates the second linear actuator to rotate the lower leg support unit based on the knee joint angle control signal in the knee joint unit that is the coupling unit between the lower leg support unit and the femoral support unit.
    • 本发明涉及一种主动式步态训练系统及方法,其基于通过测量小腿斜坡,操作髋关节和膝关节估计步态周期,基于步态障碍患者的步态能力进行更主动的步态训练 通过执行器取决于步态循环,并通过功能性电刺激(FES)操作踝关节。 机器人步态训练系统包括股骨支撑单元,髋关节支撑单元和小腿支撑单元。 此外,机器人步态训练系统还包括:支撑固定脚尖,位于小腿支撑单元的下部,并固定连接到包围脚趾尖(脚前)的趾尖垫的带; 倾斜传感器,安装在小腿支撑单元的下部或趾尖垫的一侧; 控制单元通过使用从倾斜传感器接收的倾斜信号产生FES控制信号,髋关节角度控制信号和膝关节角度控制信号; 第一线性致动器操作单元,从控制单元接收髋关节角度控制信号,并且操作第一线性致动器以基于髋关节角度控制信号旋转股骨支撑单元,所述髋关节角度控制信号是作为 股骨支撑单元和髋关节支撑单元; 第二线性致动器操作单元,从所述控制单元接收所述膝关节角度控制信号,并且操作所述第二线性致动器以基于所述膝关节角度控制信号来旋转所述小腿支撑单元,所述膝关节角度控制信号是作为所述膝关节单元之间的联接单元, 小腿支撑单元和股骨支撑单元。