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    • 41. 发明授权
    • Secondary battery having insulation bag
    • 二次电池有绝缘袋
    • US09196886B2
    • 2015-11-24
    • US12871607
    • 2010-08-30
    • Jongseok MoonByungkyu Ahn
    • Jongseok MoonByungkyu Ahn
    • H01M2/18H01M2/02H01M10/02
    • H01M2/18H01M2/0237H01M2/0262H01M2/0275H01M2/0277H01M2/028H01M2/029H01M10/02Y02E60/122
    • A secondary battery includes an electrode assembly, an insulation bag, a case, and a cap plate. The electrode assembly includes first and second electrodes, and a separator between the electrodes. The insulation bag has an open top and houses the electrode assembly. The case houses the electrode assembly and the insulation bag. The cap plate seals the case. The insulation bag includes first and second side surface portions, and first and second extending portions. The first and second side surface portions face one another and extend from one side to an opposite side. The first extending portion extends from an upper end of the first side surface portion at the one side. The second extending portion extends from an upper end of the second side surface portion at the opposite side.
    • 二次电池包括电极组件,绝缘袋,壳体和盖板。 电极组件包括第一和第二电极以及电极之间的隔板。 绝缘袋具有开口顶部并容纳电极组件。 外壳包含电极组件和绝缘袋。 盖板密封外壳。 绝缘袋包括第一和第二侧表面部分,以及第一和第二延伸部分。 第一和第二侧面部分彼此面对并且从一侧延伸到相对侧。 第一延伸部分在一侧从第一侧表面部分的上端延伸。 第二延伸部分在相对侧从第二侧表面部分的上端延伸。
    • 45. 发明授权
    • False alarm rejection for boat detection candidates
    • 船舶检测候选人的虚假警报拒绝
    • US09196044B2
    • 2015-11-24
    • US14191147
    • 2014-02-26
    • RAYTHEON COMPANY
    • Richard W. Ely
    • G06K9/00G06T7/00G06T7/40G06K9/46
    • G06T7/0042G06K9/0063G06K9/4647G06T7/12G06T7/136G06T7/162G06T7/194G06T7/73G06T7/90G06T2207/20072G06T2207/30252
    • A method for rejecting false alarms in preliminary detected ship candidates includes: receiving an image including the plurality of preliminary ship candidates; computing intensity and gradient statistics from an image background around each of the preliminary ship candidates; determining a set of thresholds from the computed intensity and gradient statistics; determining an outline and an orientation for each of the preliminary ship candidates, using the computed intensity and gradient statistics; extracting a plurality of features from each of the outlines and orientations of the preliminary ship candidates, wherein the plurality of features includes intensity-based features, gradient-based features, texture-based features and shape-based features; and rejecting false alarms in the plurality of preliminary detected ship candidates using the extracted features and the determined thresholds and statistical distance classifiers.
    • 一种在初步检测船舶候选人中拒绝假警报的方法包括:接收包括多个初步船舶候选人的图像; 来自每个初步船舶候选人的图像背景的计算强度和梯度统计; 从计算的强度和梯度统计确定一组阈值; 使用所计算的强度和梯度统计来确定每个初步船舶候选者的轮廓和方位; 从预备候选人的轮廓和方位的每一个提取多个特征,其中所述多个特征包括基于强度的特征,基于梯度的特征,基于纹理的特征和基于形状的特征; 并使用所提取的特征和所确定的阈值和统计距离分类器来拒绝多个初步检测到的船舶候选者中的假警报。
    • 46. 发明授权
    • Position detecting method and system
    • 位置检测方法和系统
    • US09195360B2
    • 2015-11-24
    • US13942398
    • 2013-07-15
    • SUNREX TECHNOLOGY CORP.
    • Shun-Pin Lin
    • G06F3/046
    • G06F3/046G06F3/03545G06F3/0416
    • A position detecting method includes: transmitting to a position indicator a first excitation signal that has a variable frequency and then receiving a first response signal therefrom, via a target antenna unit including a target antenna; determining, based on the first response signal, a target frequency of the first excitation signal at which the first response signal has a maximum energy level; continuously transmitting to the position indicator a second excitation signal that has the target frequency and then receiving a second response signal from the position indicator, via a group of antenna units including the target antenna unit individually and successively; and obtaining position information corresponding to the position indicator based on the second response signal.
    • 位置检测方法包括:经由包括目标天线的目标天线单元向位置指示器发送具有可变频率的第一激励信号,然后从其接收第一响应信号; 基于所述第一响应信号,确定所述第一响应信号具有最大能级的所述第一激励信号的目标频率; 经由包括目标天线单元的单独和连续的一组天线单元,连续向位置指示器发射具有目标频率的第二激励信号,然后从位置指示符接收第二响应信号; 以及基于所述第二响应信号获取与所述位置指示符相对应的位置信息。