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
    • 1. 发明申请
    • RADAR BASED SYSTEMS AND METHODS FOR DETECTING A FALLEN PERSON
    • 基于雷达的系统和检测人员的方法
    • US20130002434A1
    • 2013-01-03
    • US13173489
    • 2011-06-30
    • Paul Edward CuddihyJeffrey Michael AsheCorey Nicholas BufiSahika Genc
    • Paul Edward CuddihyJeffrey Michael AsheCorey Nicholas BufiSahika Genc
    • G08B23/00G01S13/88
    • G08B21/043G01S7/41G01S13/0209G01S13/18G01S13/87G08B21/0469
    • Methods, systems and non-transitory computer readable mediums that store instructions executable by one or more processors to perform a method for detecting a fallen person are presented. The present technique includes identifying a reference plane and a reference line in a designated space monitored using one or more range-controlled radars. These radars are coupled to one or more antennas configured to define fields of the range-controlled radars to one or more portions of the designated space, where at least one portion corresponds to the reference plane. The range-controlled radars detect presence of one or more parameters corresponding to a subject disposed in the designated space. The parameters, for example, include one or more physiological parameters and one or more motion parameters. The range-controlled radars then identify the subject as the fallen person if the one or more physiological parameters corresponding to the subject are detected proximate the reference plane.
    • 存储存储可由一个或多个处理器执行以执行用于检测堕落人的方法的指令的方法,系统和非暂时计算机可读介质。 本技术包括在使用一个或多个范围控制的雷达监视的指定空间中识别参考平面和参考线。 这些雷达耦合到一个或多个天线,其被配置为将范围控制的雷达的场定义到指定空间的一个或多个部分,其中至少一个部分对应于参考平面。 范围控制的雷达检测与设置在指定空间中的被摄体对应的一个或多个参数的存在。 参数例如包括一个或多个生理参数和一个或多个运动参数。 如果在接近参考平面检测到与被摄体对应的一个或多个生理参数,则范围控制的雷达然后将被摄体识别为堕落人物。
    • 2. 发明授权
    • Radar based systems and methods for detecting a fallen person
    • 基于雷达的系统和检测堕落者的方法
    • US08742935B2
    • 2014-06-03
    • US13173489
    • 2011-06-30
    • Paul Edward CuddihyJeffrey Michael AsheCorey Nicholas BufiSahika Genc
    • Paul Edward CuddihyJeffrey Michael AsheCorey Nicholas BufiSahika Genc
    • G08B23/00
    • G08B21/043G01S7/41G01S13/0209G01S13/18G01S13/87G08B21/0469
    • Methods, systems and non-transitory computer readable mediums that store instructions executable by one or more processors to perform a method for detecting a fallen person are presented. The present technique includes identifying a reference plane and a reference line in a designated space monitored using one or more range-controlled radars. These radars are coupled to one or more antennas configured to define fields of the range-controlled radars to one or more portions of the designated space, where at least one portion corresponds to the reference plane. The range-controlled radars detect presence of one or more parameters corresponding to a subject disposed in the designated space. The parameters, for example, include one or more physiological parameters and one or more motion parameters. The range-controlled radars then identify the subject as the fallen person if the one or more physiological parameters corresponding to the subject are detected proximate the reference plane.
    • 存储存储可由一个或多个处理器执行以执行用于检测堕落人的方法的指令的方法,系统和非暂时计算机可读介质。 本技术包括在使用一个或多个范围控制的雷达监视的指定空间中识别参考平面和参考线。 这些雷达耦合到一个或多个天线,其被配置为将范围控制的雷达的场定义到指定空间的一个或多个部分,其中至少一个部分对应于参考平面。 范围控制的雷达检测与设置在指定空间中的被摄体对应的一个或多个参数的存在。 参数例如包括一个或多个生理参数和一个或多个运动参数。 如果在接近参考平面检测到与被摄体对应的一个或多个生理参数,则范围控制的雷达然后将被摄体识别为堕落人物。
    • 3. 发明授权
    • System and method for generating a threat alert
    • 用于生成威胁警报的系统和方法
    • US08050143B2
    • 2011-11-01
    • US12054510
    • 2008-03-25
    • Corey Nicholas BufiSahika Genc
    • Corey Nicholas BufiSahika Genc
    • H04B1/10
    • G08B13/1672
    • A system for generating a threat alert in an infrastructure component is provided. The system includes multiple acoustic sensors configured to detect a signal. The system also includes a processing circuitry including at least one analog-to-digital converter configured to digitize the signal. The processing circuitry also includes a digital signal processor configured to process the acoustic signal in a sequential routine. The sequential routine includes a noise filtering routine configured to filter background noise from the acoustic signal and generate a filtered signal. The sequential routine also includes a source identification routine configured to identify a source generating the acoustic signal based upon the filtered signal. The sequential routine further includes a threat analysis routine configured to detect a threat based upon the source identified and generate a threat level signal.
    • 提供了用于在基础设施组件中生成威胁警报的系统。 该系统包括被配置为检测信号的多个声学传感器。 该系统还包括处理电路,该处理电路包括至少一个被配置为数字化该信号的模拟 - 数字转换器。 处理电路还包括配置成以顺序程序处理声信号的数字信号处理器。 顺序程序包括噪声滤波程序,其被配置为从声学信号中滤除背景噪声并产生滤波信号。 顺序例程还包括源识别程序,其被配置为基于滤波的信号来识别产生声信号的源。 顺序例程还包括威胁分析程序,该程序被配置为基于所识别的源来检测威胁并产生威胁等级信号。
    • 4. 发明申请
    • SYSTEM AND METHOD FOR GENERATING A THREAT ALERT
    • 用于产生警报的系统和方法
    • US20090245026A1
    • 2009-10-01
    • US12054510
    • 2008-03-25
    • Corey Nicholas BufiSahika Genc
    • Corey Nicholas BufiSahika Genc
    • H04B1/10
    • G08B13/1672
    • A system for generating a threat alert in an infrastructure component is provided. The system includes multiple acoustic sensors disposed in a protected zone around the infrastructure component, wherein each of the sensors is configured to detect a signal corresponding to an outcome that causes damage to the infrastructure component. The system also includes a processing circuitry coupled to each of the multiple acoustic sensors. The processing circuitry includes at least one analog-to-digital converter configured to digitize the signal. The processing circuitry also includes a digital signal processor configured to process the acoustic signal in a sequential routine. The sequential routine includes a noise filtering routine configured to filter background noise from the acoustic signal and generate a filtered signal. The sequential routine also includes a source identification routine configured to identify a source generating the acoustic signal based upon the filtered signal. The sequential routine further includes a threat analysis routine configured to detect a threat based upon the source identified and generate a threat level signal. The system also includes a remote monitoring center that receives the threat level signals from the processing circuitry and transmit an alert message to a concerned authority.
    • 提供了用于在基础设施组件中生成威胁警报的系统。 系统包括设置在基础设施部件周围的保护区域中的多个声学传感器,其中每个传感器被配置为检测对应于导致对基础设施部件的损坏的结果的信号。 该系统还包括耦合到多个声学传感器中的每一个的处理电路。 所述处理电路包括被配置为数字化所述信号的至少一个模拟 - 数字转换器。 处理电路还包括配置成以顺序程序处理声信号的数字信号处理器。 顺序程序包括噪声滤波程序,其被配置为从声学信号中滤除背景噪声并产生滤波信号。 顺序例程还包括源识别程序,其被配置为基于滤波的信号来识别产生声信号的源。 顺序例程还包括威胁分析程序,该程序被配置为基于所识别的源来检测威胁并产生威胁等级信号。 该系统还包括远程监视中心,其接收来自处理电路的威胁等级信号,并向相关机构发送警报消息。
    • 5. 发明授权
    • System, method, and computer software code for predicting an acute hypotensive episode
    • 用于预测急性低血压发作的系统,方法和计算机软件代码
    • US08795186B2
    • 2014-08-05
    • US12751729
    • 2010-03-31
    • Sahika Genc
    • Sahika Genc
    • A61B5/021A61B5/024
    • A61B5/412A61B5/021A61B5/024A61B2505/03G06F19/00G16H50/50
    • A system for determining onset of an acute hypotensive episode, the system includes a plurality of collectors configured to determine heart rate, mean arterial pressure, stroke volume, total peripheral resistance, and/or age of a patient, an estimate model configured to receive data from the collectors, a simulate model configured to receive information from the estimate model to simulate operation of an effector portion and a neural portion of an arterial baroreceptor reflex pathway, and a prediction model configured predict onset of an acute hypotensive episode based on results from the simulate model. A method and a computer software code for determining onset of an acute hypotensive episode are also disclosed.
    • 一种用于确定急性降压发作发作的系统,所述系统包括被配置为确定心率,平均动脉压,搏动量,总外周阻力和/或患者年龄的多个收集器,被配置为接收数据的估计模型 来自收集器的模拟模型被配置为从估计模型接收信息以模拟效应部分和动脉压力感受器反射途径的神经部分的操作,以及预测模型,其基于来自所述预测模型的结果来配置预测急性低血压发作的发作 模拟模型。 还公开了用于确定急性降压发作发作的方法和计算机软件代码。
    • 6. 发明授权
    • Self-healing power grid and method thereof
    • 自愈电网及其方法
    • US08504214B2
    • 2013-08-06
    • US12818206
    • 2010-06-18
    • Sahika GencIbrahim Gokcen
    • Sahika GencIbrahim Gokcen
    • G05D3/12
    • G05B23/0248
    • A method for determining a self-healing power grid status is presented. The method includes receiving respective real-time monitoring data corresponding to one or more power grid components, wherein one or more agents are coupled to the power grid components. The method includes the steps of determining a respective current infectiousness state based upon the received respective real-time monitoring data, determining respective output data based upon the respective current infectiousness state, exchanging the respective output data with one or more neighboring agents, and generating a respective new infectiousness state based upon the respective exchanged output data and a state transition diagram.
    • 提出了一种确定自愈电网状态的方法。 该方法包括接收对应于一个或多个电网组件的各个实时监控数据,其中一个或多个代理耦合到电网组件。 该方法包括以下步骤:基于所接收的相应实时监控数据确定相应的当前感染状态,基于相应的当前感染状态确定相应的输出数据,与一个或多个相邻代理交换相应的输出数据,以及生成 基于相应的交换的输出数据和状态转换图的相应的新的感染状态。
    • 8. 发明申请
    • SELF-HEALING POWER GRID AND METHOD THEREOF
    • 自愈电网及其方法
    • US20110313581A1
    • 2011-12-22
    • US12818206
    • 2010-06-18
    • Sahika GencIbrahim Gokcen
    • Sahika GencIbrahim Gokcen
    • G06F1/28G06F17/18G01R31/00G01R21/00
    • G05B23/0248
    • A method for determining a self-healing power grid status is presented. The method includes receiving respective real-time monitoring data corresponding to one or more power grid components, wherein one or more agents are coupled to said power grid components, determining a respective current infectiousness state based upon the received real-time monitoring data, determining respective output data based upon the respective current infectiousness state, exchanging the respective output data with one or more neighboring agents, and generating a respective new infectiousness state based upon the exchanged output data and a state transition diagram.
    • 提出了一种确定自愈电网状态的方法。 该方法包括接收对应于一个或多个电网组件的各个实时监控数据,其中一个或多个代理耦合到所述电网组件,基于所接收的实时监控数据确定相应的当前感染状态,确定相应的 基于相应的当前感染状态输出数据,与一个或多个相邻代理交换相应的输出数据,以及基于所交换的输出数据和状态转换图来生成相应的新的感染状态。
    • 10. 发明申请
    • Systems, Methods, and Apparatus for Coordinated Volt/VAR Control in Power Distribution Networks
    • 配电网协调伏/ VAR控制的系统,方法和装置
    • US20120197450A1
    • 2012-08-02
    • US13095263
    • 2011-04-27
    • Michael Joseph KrokWei RenSahika Genc
    • Michael Joseph KrokWei RenSahika Genc
    • G05F5/00
    • H02J3/16H02J2003/003Y02E40/34
    • Certain embodiments of the invention may include systems, methods, and apparatus for providing coordinated volt/volt-amps-reactive (VAR) control in power distribution networks. According to an example embodiment of the invention, a method is provided for coordinating voltage and volt-amps-reactive (VAR) control (VVC) in power distribution networks. The method can include receiving one or more VVC objective functions from a distribution management system (DMS); determining at least one microgrid conservation voltage reduction factor (CVRF); forecasting microgrid load profile for a predetermined period of time; controlling microgrid VVC resources based at least on the one or more received VVC objective functions; and communicating the at least one microgrid CVRF and the forecasted load profile to the DMS.
    • 本发明的某些实施例可以包括用于在配电网络中提供协调的伏特/伏安反应(VAR)控制的系统,方法和装置。 根据本发明的示例性实施例,提供了一种用于协调配电网络中的电压和电压反应(VAR)控制(VVC)的方法。 该方法可以包括从分发管理系统(DMS)接收一个或多个VVC目标函数; 确定至少一个微电网保护电压降低因子(CVRF); 在预定时间段内预测微电网负载曲线; 至少基于一个或多个所接收的VVC目标函数来控制微电网VVC资源; 以及将所述至少一个微网CVRF和所预测的负载分布传送到所述DMS。