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    • 71. 发明申请
    • Face image processing method
    • 面部图像处理方法
    • US20100177981A1
    • 2010-07-15
    • US12318891
    • 2009-01-12
    • Jin WangGuo-Gang WangCheng-Jian HeXiao-Mu LiuJian-Feng Li
    • Jin WangGuo-Gang WangCheng-Jian HeXiao-Mu LiuJian-Feng Li
    • G06K9/40
    • G06T5/005G06K9/00234G06T7/11G06T2207/10024G06T2207/20016G06T2207/30201
    • A face image processing method is applied to an electronic device, such that the electronic device can perform a face detection to a digital image to obtain a face image in the digital image automatically, and perform a skin color detection to the face image to exclude non-skin features such as eyes, eyeglasses, eyebrows, a moustache, a mouth and nostrils on the face image, and form a skin mask in an area range of the face image belonging to skin color, and finally perform a filtering process to the area range of the face image corresponding to the skin mask to filter high-frequency, mid-frequency and low-frequency noises of an abnormal skin color in the area range of the face image, so as to quickly remove blemishes and dark spots existed in the area range of the face image.
    • 面部图像处理方法应用于电子设备,使得电子设备可以对数字图像执行面部检测,以自动获得数字图像中的面部图像,并对面部图像执行皮肤颜色检测,以排除非 在脸部图像上的眼睛,眼镜,眉毛,胡子,嘴和鼻孔等的皮肤特征,并且在属于肤色的脸部图像的区域范围内形成皮肤掩模,并且最终对该区域进行过滤处理 对应于皮肤掩模的面部图像的范围,以过滤面部图像的区域范围内的异常皮肤颜色的高频,中频和低频噪声,以便快速消除在脸部图像的区域范围内的瑕疵和黑点 面部图像的面积范围。
    • 74. 发明申请
    • NON-TOXIC ALKALINE ELECTROLYTE WITH ADDITIVES FOR RECHARGEABLE ZINC CELLS
    • 具有可补充ZINC细胞添加剂的非毒性碱性电解质
    • US20100062327A1
    • 2010-03-11
    • US12207334
    • 2008-09-09
    • Lin-Feng Li
    • Lin-Feng Li
    • H01M6/04
    • H01M10/26H01M2300/0014
    • An electrolyte composition for zinc-based electrochemical cells that contains KOH and potassium acetate (KAcet) and/or soluble salts of cesium. The electrolyte significantly eliminates shape change and dendrite growth while retaining high ionic conductivity. Anticorrosion compounds such as soluble indium compounds may be included alone or in combination with auxiliary anticorrosion compounds such as soluble tin compounds to improve charged stand and shelf life. Optionally, lithium hydroxide may be added to the electrolyte to facilitate charge acceptance of the positive electrode, particularly at cold temperatures.
    • 含有KOH和乙酸钾(KAcet)和/或铯的可溶性盐的锌基电化学电池的电解质组合物。 电解液显着消除形状变化和枝晶生长,同时保持高离子电导率。 防腐蚀化合物如可溶性铟化合物可以单独包括或与辅助防腐化合物如可溶性锡化合物组合包括以改善电荷载体和保质期。 任选地,可以向电解质中加入氢氧化锂以促进正极的充电接受,特别是在低温下。
    • 76. 发明申请
    • ELECTRONIC DEVICES AND METHOD FOR SHARING PRODUCT-RELATED DATA
    • 用于共享产品相关数据的电子设备和方法
    • US20100005140A1
    • 2010-01-07
    • US11722195
    • 2005-12-19
    • Wenying YouGongming WeiDarwin HeSteven Broelis LuitjensFeng LiWilhelmus Franciscus Johannes Fontijn
    • Wenying YouGongming WeiDarwin HeSteven Broelis LuitjensFeng LiWilhelmus Franciscus Johannes Fontijn
    • G06F15/16
    • G06Q30/02H04L67/04H04L69/329
    • The electronic device (21) for receiving product-related data comprises a memory (23) for storing a unique product identifier identifying a product selected from a database, a wireless transmitter (25), a wireless receiver (27) and a processor (29). The processor (29) performs a method comprising the steps of wirelessly transmitting a unique product identifier to be received by a nearby electronic device, the unique product identifier identifying a product selected from a database, and wirelessly receiving data related to said product from the nearby electronic device. The electronic device (31) for transmitting product-related data comprises a storage means (33) for storing a unique product identifier and data associated with the unique product identifier, a wireless transmitter (35), a wireless receiver (37) and a processor (39). The processor performs a method comprising the steps of wirelessly receiving a unique product identifier from a further electronic device in a vicinity of the electronic device, the unique product identifier identifying a product selected from a database, and wirelessly transmitting data associated with the unique product identifier to the further electronic device.
    • 用于接收产品相关数据的电子设备(21)包括存储器(23),用于存储识别从数据库,无线发射器(25),无线接收器(27)和处理器(29)中选择的产品的唯一产品标识符 )。 处理器(29)执行一种方法,该方法包括以下步骤:无线地发送要由附近的电子设备接收的唯一商品标识符,识别从数据库中选择的商品的唯一商品标识符,以及从附近的无线接收与所述商品有关的数据 电子设备。 用于发送产品相关数据的电子设备(31)包括存储装置(33),用于存储与唯一商品标识符相关联的唯一商品标识符和数据,无线发射器(35),无线接收器(37)和处理器 (39)。 处理器执行一种方法,该方法包括以下步骤:从电子设备附近的另一电子设备无线地接收唯一的产品标识符,识别从数据库中选择的产品的唯一产品标识符,以及与唯一商品标识符相关联的数据无线传输 到另外的电子设备。
    • 77. 发明申请
    • MEMORY MANAGEMENT
    • 内存管理
    • US20090150613A1
    • 2009-06-11
    • US11954101
    • 2007-12-11
    • Ligang WangXiao-Feng Li
    • Ligang WangXiao-Feng Li
    • G06F12/00
    • G06F12/0261
    • A memory manager that compacts a memory heap and reclaims space allocated to dead entities is disclosed. The memory manager may include threads of a first phase, threads of a second phase, and threads of a third phase. The threads of the first phase may assign a target address to each live entity of the memory heap. The thread of the second phase may update references of the memory heap based upon the target address for each live entity. The threads of the third phase may copy each live entity of the memory heap to its target address.
    • 公开了一种压缩内存堆并回收分配给死体的空间的内存管理器。 存储器管理器可以包括第一阶段的线程,第二阶段的线程和第三阶段的线程。 第一阶段的线程可以将目标地址分配给存储器堆的每个实体。 第二阶段的线程可以基于每个实体的目标地址来更新存储器堆的引用。 第三阶段的线程可以将内存堆的每个实体复制到其目标地址。
    • 78. 发明授权
    • Method for multi-user demodulation with variable spread spectrum coefficient
    • 具有可变扩频系数的多用户解调方法
    • US07539236B2
    • 2009-05-26
    • US11125612
    • 2005-05-10
    • Feng Li
    • Feng Li
    • H04B1/00
    • H04B1/7103H04B2201/70703H04J13/0044
    • A multiuser demodulation method with variable spreading factor may use the multiuser detection and variable spreading factor techniques in the same system at the same time without increasing the demodulation computation volume or the system time-delay. At the receiving side, the method may include: taking a low spreading factor to demodulate the received signals with the multiuser detections and obtaining intermediate demodulation results of the Transport Format Combination Indicator (TFCI) data and of the user data; demodulating the intermediate demodulation result of the TFGI data with a fixed spreading factor or a variable spreading factor; obtaining a real spreading factor from the demodulated intermediate demodulation result of the TFCI data; and processing the intermediate demodulation result of the user data with the real spreading factor to obtain the final received user data.
    • 具有可变扩频因子的多用户解调方法可以在同一系统中同时使用多用户检测和可变扩频因子技术,而不增加解调计算量或系统时延。 在接收侧,该方法可以包括:采用低扩展因子以用多用户检测解调接收到的信号,并获得传输格式组合指示符(TFCI)数据和用户数据的中间解调结果; 以固定扩频因子或可变扩频因子解调TFGI数据的中间解调结果; 从解调的TFCI数据的中间解调结果获得真正的扩展因子; 并以实际扩频因子处理用户数据的中间解调结果,以获得最终接收到的用户数据。
    • 80. 发明申请
    • MAGNET TEMPERATURE CONTROL DEVICE
    • 磁控温度控制装置
    • US20090071626A1
    • 2009-03-19
    • US12233773
    • 2008-09-19
    • An Feng LiXiao Guang Liu
    • An Feng LiXiao Guang Liu
    • F28D15/00
    • G05D23/1919G01R33/3804G01R33/3806G01R33/383
    • A magnet temperature control device, for use in a magnetic resonance system having a magnet, includes a pipeline and a temperature regulator. The pipeline is connected to a liquid or gas circulation, and the temperature regulator is connected in series in the pipeline to regulate the temperature of the liquid or gas. A part of the pipeline is arranged inside the magnet, while the rest of the pipeline is arranged outside said magnet; the part of said pipeline which is arranged inside said magnet is distributed uniformly within the magnet, and its cross-sectional shape is in an annular, helical, radicalized or network form, or a combination thereof. Compared to the use of a heater that is distributed only on the surface of the magnet, the pipeline distributed inside the magnet can control the magnet temperature more directly and effectively, so as to smooth and eliminate the temperature change of the magnet promptly by the liquid or gas flow therein, thereby making the magnet temperature more stable.
    • 一种用于具有磁体的磁共振系统中的磁体温度控制装置,包括管线和温度调节器。 管道连接到液体或气体循环,温度调节器串联在管道中以调节液体或气体的温度。 管道的一部分布置在磁体内部,而管道的其余部分布置在所述磁体的外部; 布置在所述磁体内部的所述管道的部分均匀分布在磁体内,其截面形状为环形,螺旋状,自由基状或网状,或其组合。 与使用仅在磁体表面分布的加热器相比,分布在磁体内部的管道可以更直接有效地控制磁体温度,从而使液体迅速平滑消除磁体的温度变化 或气体流动,从而使磁体温度更稳定。