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    • 42. 发明申请
    • PHYSIOLOGICAL SIGNAL-BASED ENCRYPTION AND EHR MANAGEMENT
    • 基于生理信号的加密和EHR管理
    • US20150304101A1
    • 2015-10-22
    • US14688181
    • 2015-04-16
    • Sandeep GuptaAyan Banerjee
    • Sandeep GuptaAyan Banerjee
    • H04L9/00G06F21/60H04L29/06
    • G06F21/606A61B5/0004G06F2221/2107H04B13/005H04L9/0866H04L63/0428H04L2209/34H04L2209/805H04L2209/88H04W4/80H04W12/02H04W12/04
    • Systems and methods are provided for encoding and decoding data (such as, for example, an encryption key) using a physiological signal. A data item string is separated into a defined number of component segments and each component segment is used as a coefficient of a polynomial equation. A plurality of signal features are then identified from a physiological signal and a plurality of ordered pairs are created based on the plurality of identified signal features using the polynomial equation. A data package including the plurality of ordered pairs and obfuscated by a plurality of chaff points is transmitted to another system. The receiver system uses a corresponding physiological signal to filter out the chaff points and to reconstruct the polynomial equation, for example, by LaGrangian interpolation. The coefficients of the reconstructed polynomial equation are then used to derive the encoded data item string.
    • 提供了使用生理信号对数据(例如,加密密钥)进行编码和解码的系统和方法。 数据项串被分成定义数量的分量段,每个分量段用作多项式方程的系数。 然后从生理信号识别多个信号特征,并且使用多项式方程式,基于多个识别的信号特征创建多个有序对。 将包含多个有序对的数据包和由多个裂点点模糊化的数据包被发送到另一个系统。 接收机系统使用相应的生理信号来滤除谷点,并且例如通过拉格朗日插值来重建多项式方程。 然后,使用重构多项式方程的系数来导出编码数据项串。
    • 46. 发明授权
    • Optimizations in multi-destination tree calculations for layer 2 link state protocols
    • 第2层链路状态协议的多目标树计算中的优化
    • US08923113B2
    • 2014-12-30
    • US13534726
    • 2012-06-27
    • Varun ShahAyan BanerjeeAbhay Roy
    • Varun ShahAyan BanerjeeAbhay Roy
    • G01R31/08
    • H04L45/28H04L45/48
    • Techniques to optimize root network node selection for network tree paths are provided. A network disruption event is detected. Network nodes in the network are configured with root priorities. Network nodes in a first set of the network nodes operate as root nodes for ordered network tree paths. Root priority information is retrieved from a database for each of the network nodes. Based on the root priority information, network nodes are selected for a new set of network nodes to operate as new root nodes for new ordered network tree paths upon occurrence of the network disruption event. The new set of network nodes comprises common network nodes present in the first set. An order of the network nodes in the new set is determined such that at least one common network node in the new set is maintained in the same order as that in the first set.
    • 提供了优化网络树路径的根网络节点选择的技术。 检测到网络中断事件。 网络中的网络节点配置有根优先级。 第一组网络节点中的网络节点作为有序网络树路径的根节点运行。 从每个网络节点的数据库检索根优先级信息。 基于根优先级信息,网络节点被选择用于一组新的网络节点,以便在发生网络中断事件时作为新的有序网络树路径的新根节点运行。 新的一组网络节点包括第一组中存在的公共网络节点。 确定新集合中的网络节点的顺序,使得新组中的至少一个公共网络节点以与第一组中相同的顺序被维持。
    • 49. 发明申请
    • HOT GAS TEMPERATURE MEASUREMENT IN GAS TURBINE USING TUNABLE DIODE LASER
    • 使用可旋转二极管激光器在气体涡轮机中进行热气温度测量
    • US20120060510A1
    • 2012-03-15
    • US12880681
    • 2010-09-13
    • Vivek Venugopal BadamiScott Mordin HoyteChayan MitraAyan Banerjee
    • Vivek Venugopal BadamiScott Mordin HoyteChayan MitraAyan Banerjee
    • F02C7/20H01S3/10
    • G01K13/02G01J3/108G01J3/427G01K11/12G01K2013/024
    • A combustion gas measurement apparatus mounted in a gas turbine including: a tunable laser generating a radiation beam passing through a combustion gas path; a controller tuning the laser to emit radiation having at least a first selected wavelength and a second selected wavelength which both correspond to temperature-dependent transitions of a combustion species of the gas, wherein the first selected wavelength and the second selected wavelength are not near absorption peaks of neighboring wavelengths; a detector sensing the radiation beam passing through the combustion gas and generating an absorption signal indicative of an absorption of the beam by the combustion gas at each of the first wavelength and the second wavelength, and a processor executing a program stored on a non-transitory storage medium determining a combustion gas temperature based on a ratio of the adoption signals for the first wavelength and the second wavelength.
    • 一种安装在燃气轮机中的燃烧气体测量装置,包括:可调谐激光器,其产生通过燃烧气体路径的辐射束; 调谐所述激光器以发射具有至少第一选定波长和第二选定波长的辐射的控制器,其对应于所述气体的燃烧物质的温度依赖性跃迁,其中所述第一选定波长和所述第二选定波长不接近吸收 相邻波长的峰; 检测器,其感测通过燃烧气体的辐射束,并且产生指示在第一波长和第二波长中的每一个处由燃烧气体吸收光束的吸收信号,以及处理器,其执行存储在非瞬时的程序 存储介质基于第一波长和第二波长的采用信号的比率来确定燃烧气体温度。
    • 50. 发明授权
    • Detector for precursive detection of electrical arc
    • 用于电弧前期检测的检测器
    • US07750646B2
    • 2010-07-06
    • US11972033
    • 2008-01-10
    • Sandip MaityAyan Banerjee
    • Sandip MaityAyan Banerjee
    • G01R31/08
    • H02H1/0023
    • A detector system for precursively identifying an electrical arcing event is provided. The system may include a transmission channel for transmitting a radio frequency signal to a zone where an arcing event may occur. The system may further include a reception channel for receiving a radio frequency signal resulting from an interaction of the transmitted radio frequency signal and an electric field which forms at the zone as a precursor to an arcing event. A pre-arc identification circuit may be coupled to process the resulting radio frequency signal. The identification circuit may be configured to generate a signal indicative of a pre-arc condition based on at least one parameter of the resulting radio frequency signal.
    • 提供了用于预先识别电弧事件的检测器系统。 该系统可以包括用于将射频信号发送到可能发生电弧事件的区域的传输信道。 该系统可以进一步包括一个接收信道,用于接收由所发射的射频信号与在该区域形成的电场的相互作用而产生的射频信号,作为电弧放电事件的前兆。 预弧识别电路可以被耦合以处理所得到的射频信号。 识别电路可以被配置为基于所得到的射频信号的至少一个参数来产生指示预弧状态的信号。