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    • 3. 发明授权
    • Characterization of temporary identifiers in a wireless communication network
    • 无线通信网络中临时标识符的表征
    • US08897285B2
    • 2014-11-25
    • US12856232
    • 2010-08-13
    • Jiansong WangRyan RedfernJianrong Wang
    • Jiansong WangRyan RedfernJianrong Wang
    • H04J3/24H04W8/26H04W80/04
    • H04W8/26H04W80/04
    • System(s), device(s), and method(s) are provided to characterize a temporary identifier for user equipment (UE) in telecommunication procedure(s) in a wireless communication network. Based on radio technology of at least one serving node that enables at least part of the telecommunication procedure(s), the UE generates a TI and a classifier that discloses the type of the TI. The classifier enables distinguishing a TI value in a first radio technology from a TI value in a second radio technology. In addition the classifier enables a serving node that receives the classifier to identify a logic address of a disparate serving node without restriction in backwards compatibility amongst radio protocols utilized by the wireless communication network.
    • 提供系统,设备和方法来表征在无线通信网络中的电信过程中的用户设备(UE)的临时标识符。 基于能够进行至少部分电信过程的至少一个服务节点的无线电技术,UE生成公开TI的类型的TI和分类器。 分类器使得能够将第一无线电技术中的TI值与第二无线电技术中的TI值区分开。 此外,分类器使得接收分类器的服务节点能够识别不同服务节点的逻辑地址,而不限制由无线通信网络使用的无线电协议之间的向后兼容性。
    • 4. 发明授权
    • Image sequence compression and decompression
    • 图像序列压缩和解压缩
    • US5841473A
    • 1998-11-24
    • US732491
    • 1996-10-31
    • Charles K. ChuiJianrong Wang
    • Charles K. ChuiJianrong Wang
    • G06T9/00H04N7/26H04N7/50
    • H04N19/635H04N19/61H04N19/63H04N19/115H04N19/146
    • A method and system for compressing and decompressing a sequence of image frames is disclosed. According to the disclosed embodiments of the invention, the compression process includes an intraframe decomposition process (24, 24') performed upon each frame in both the row and column directions, including an m.sup.th order averaging and differencing operation (56, 62). Each frame is then combined with others in an adjacent pair or group of four by way of an interframe decomposition (28). Quantization (30) is then performed, preferably by division of each coefficient by a quantizer (.rho.) associated with the one of the frequency component subbands containing the coefficient. Reconstruction of the compressed frames is accomplished by performing the inverse of the compression process. According to the disclosed embodiments, either the compression or decompression processes and systems performs Cholesky filtering (60, 66; 170, 172), preferably in a recursive manner by way of forward and backward filtering. In this way, one or the other of the compression system (CS) or decompression system (DS) is relieved from a significant amount of computing burden.
    • PCT No.PCT / US96 / 12326 Sec。 371日期:1996年10月31日 102(e)日期1996年10月31日PCT PCT 1996年7月26日PCT公布。 公开号WO97 / 06642 1997年2月20日公开了一种用于压缩和解压缩一系列图像帧的方法和系统。 根据本发明公开的实施例,压缩过程包括在行和列方向上的每个帧上执行的帧内分解处理(24,24'),包括第m阶平均和差分操作(56,62)。 然后通过帧间分解(28)将每个帧与相邻的一对或四组中的其他帧组合。 然后,优选地通过与包含系数的频率分量子带之一相关联的量化器(rho)对每个系数进行除法来执行量化(30)。 压缩帧的重建是通过执行压缩过程的逆来完成的。 根据所公开的实施例,压缩或解压缩过程和系统优选地通过前向和后向过滤以递归方式执行Cholesky过滤(60,66; 170,172)。 以这种方式,压缩系统(CS)或解压缩系统(DS)中的一个或另一个减轻了大量的计算负担。
    • 6. 发明申请
    • System and Method for Predicting Mold Growth in an Environment
    • 在环境中预测模具生长的系统和方法
    • US20070026107A1
    • 2007-02-01
    • US11532372
    • 2006-09-15
    • Jianrong WangChaoming Zhang
    • Jianrong WangChaoming Zhang
    • A23B4/12A23L1/31
    • C12Q1/04
    • Mold growth monitoring and prediction systems and methods for an environment are disclosed. The system includes a processing unit, a temperature sensor, and a humidity sensor. The processing unit obtains a temperature reading and a humidity reading of the environment from the sensors. The processing unit uses an algorithm to determine a probability of mold growth based on the temperature reading, the humidity reading, and a time reading. For example, the algorithm defines an envelope based on temperature, humidity, and one or more species of mold. The envelope substantially separates conditions detrimental to mold growth from conditions conducive to mold growth for the species of mold. The processing unit uses the algorithm to determine whether the temperature reading and the humidity reading fall within detrimental or conducive conditions to mold growth. Based on the conditions, the processing unit either increases or decreases the probability of mold growth.
    • 公开了用于环境的模具生长监测和预测系统和方法。 该系统包括处理单元,温度传感器和湿度传感器。 处理单元从传感器获得环境的温度读数和湿度读数。 处理单元使用算法来确定基于温度读数,湿度读数和时间读数的模具生长的概率。 例如,算法基于温度,湿度和一种或多种模具来定义包络。 外壳基本上将对模具生长有害的条件从有利于模具种类的模具生长的条件下分离出来。 处理单元使用算法来确定温度读数和湿度读数是否落在有害或有利的条件下以模拟生长。 根据条件,处理单元可增加或减少模具生长的可能性。
    • 10. 发明申请
    • CHARACTERIZATION OF TEMPORARY IDENTIFIERS IN A WIRELESS COMMUNICATION NETWORK
    • 无线通信网络中临时标识符的表征
    • US20120039222A1
    • 2012-02-16
    • US12856232
    • 2010-08-13
    • Jiansong WangRyan RedfernJianrong Wang
    • Jiansong WangRyan RedfernJianrong Wang
    • H04L12/56H04B7/00
    • H04W8/26H04W80/04
    • System(s), device(s), and method(s) are provided to characterize a temporary identifier for user equipment (UE) in telecommunication procedure(s) in a wireless communication network. Based on radio technology of at least one serving node that enables at least part of the telecommunication procedure(s), the UE generates a TI and a classifier that discloses the type of the TI. The classifier enables distinguishing a TI value in a first radio technology from a TI value in a second radio technology. In addition the classifier enables a serving node that receives the classifier to identify a logic address of a disparate serving node without restriction in backwards compatibility amongst radio protocols utilized by the wireless communication network.
    • 提供系统,设备和方法来表征在无线通信网络中的电信过程中的用户设备(UE)的临时标识符。 基于能够进行至少部分电信过程的至少一个服务节点的无线电技术,UE生成公开TI的类型的TI和分类器。 分类器使得能够将第一无线电技术中的TI值与第二无线电技术中的TI值区分开。 此外,分类器使得接收分类器的服务节点能够识别不同服务节点的逻辑地址,而不限制由无线通信网络使用的无线电协议之间的向后兼容性。