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    • 3. 发明申请
    • METHOD AND SYSTEM FOR LOCATING LANDMARKS ON 3D MODELS
    • 用于定位3D模型的地名的方法和系统
    • US20090187388A1
    • 2009-07-23
    • US12280973
    • 2007-02-27
    • Chang ShuZouhour Ben Azouz
    • Chang ShuZouhour Ben Azouz
    • G06F17/10
    • G06K9/00214G06K9/00221G06K9/00362G06K9/6211G06K9/6296
    • A plurality of landmarks are automatically located on a 3-dimensional polygonal mesh of connected vertices. A probabilistic graph is generated for the plurality of landmarks pre-identified on each of a first set of 3-dimensional models. The graph represents local surface characteristics for each landmark and relational positions between neighboring pairs of landmarks. Local surface characteristics are determined for each vertex of the mesh. For each landmark, a set of the vertices is identified that satisfies a criteria based on a surface difference between the vertex local surface characteristics and the landmark local surface characteristics. A relational position for each pair of vertices from the sets of vertices corresponding to the neighboring pairs is determined based on the graph. One of the vertices is determined for each of the plurality of landmarks to minimize the surface difference and the relational difference for the landmark.
    • 多个地标自动位于连接顶点的三维多边形网格上。 为在第一组三维模型中的每一个上预先识别的多个地标生成概率图。 该图表示每个地标的局部表面特征以及相邻的地标对之间的关​​系位置。 确定网格的每个顶点的局部表面特征。 对于每个标记,一组顶点被识别为满足基于顶点局部表面特征与地标局部表面特征之间的表面差的标准。 基于该图确定来自对应于相邻对的顶点集合的每对顶点的关系位置。 为多个地标中的每一个确定一个顶点,以最小化地标的表面差异和关系差异。
    • 4. 发明授权
    • Thermophotovoltaic power supply
    • 热光伏电源
    • US07557293B2
    • 2009-07-07
    • US10728108
    • 2003-12-03
    • Siaw Kiang ChouChang ShuWen Ming YangHong XueZhi Wang Li
    • Siaw Kiang ChouChang ShuWen Ming YangHong XueZhi Wang Li
    • H01L31/09
    • H01L31/0693H01L31/02167H02S10/30Y02E10/544
    • A microthermophotovoltaic (micro-TPV) system is a novel micro power device. The system fully utilizes the high surface-to-volume ratio of a microcombustor, and is able to deliver and electrical power output of 0.5-10 W in a package of the order of centimeters. The system comprises mainly a combustor-emitter, a filter, a photovoltaic (PV) cell array, and cooling fins. The combustor-emitter functions to convert chemical energy into radiative heat energy. The filter is able to recycle a large part of the unusable energy that cannot be converted into electricity by the PV cell array. The PV cell array is used to convert radiative heat energy into electricity. The system has no moving parts. Its fabrication and assembly are relatively easy. As a result, it can be readily used as a power source of micro mechanical devices and portable devices, in which convenience and low cost reliability and ease of maintenance are the key factors of consideration.
    • 微型光伏(micro-TPV)系统是一种新型微功率器件。 该系统充分利用微型燃烧器的高表面积与体积比,并且能够在厘米数量级的包装中输送0.5-10瓦的电力输出。 该系统主要包括燃烧器 - 发射器,过滤器,光伏(PV)电池阵列和冷却片。 燃烧器 - 发射器用于将化学能转化为辐射热能。 过滤器能够回收大量不能用PV电池阵列转换成电的不可用能量。 光伏电池阵列用于将辐射热能转换为电能。 系统没有移动部件。 其制造和组装相对容易。 因此,它可以容易地用作微机械装置和便携式装置的电源,其中便利性和低成本的可靠性和易于维护是考虑的关键因素。
    • 6. 发明授权
    • Prime field elliptic curve cryptography processor
    • 主场椭圆曲线加密处理器
    • US08358779B1
    • 2013-01-22
    • US12713297
    • 2010-02-26
    • Fei SunChang Shu
    • Fei SunChang Shu
    • G06F21/00
    • G06F21/72G06F7/725H04L9/0861H04L9/28H04L9/3066H04L2209/12
    • Prime field elliptic curve cryptography processors are provided, having corresponding methods and computer-readable media. The processors comprise a prime field circuit comprising a first memory configured to store data, and an arithmetic logic unit (ALU) circuit configured to perform prime field operations upon the data; and a curve operation processor comprising a second memory configured to store instructions, and a controller configured to execute the instructions; wherein the instructions include instructions for performing curve operations upon the data, wherein the curve operations require performing the prime field operations upon the data; and wherein the instructions for performing the curve operations cause the ALU circuit to perform the prime field operations.
    • 提供了主场椭圆曲线加密处理器,具有相应的方法和计算机可读介质。 所述处理器包括:主场电路,包括被配置为存储数据的第一存储器;以及被配置为对所述数据进行主场操作的算术逻辑单元(ALU)电路; 以及曲线运算处理器,包括被配置为存储指令的第二存储器和被配置为执行所述指令的控制器; 其中所述指令包括用于对所述数据执行曲线操作的指令,其中所述曲线操作要求对所述数据执行所述主场操作; 并且其中用于执行曲线操作的指令使得ALU电路执行主场操作。
    • 7. 发明授权
    • Low cost and high speed architecture of montgomery multiplier
    • montgomery乘法器的低成本和高速架构
    • US08527570B1
    • 2013-09-03
    • US12855340
    • 2010-08-12
    • Chang ShuHeng TangSean Lee
    • Chang ShuHeng TangSean Lee
    • G06F7/38
    • G06F7/728
    • A system to perform Montgomery multiplication includes a first multiplier array configured to multiply w bits of an operand X by W bits of an operand Y, where w and W are integers and w is less than W. A second multiplier array is configured to multiply w bits of an operand Q by W bits of a modulo M. An adder array is configured to add outputs of the first and second multiplier arrays to generate a sum. A partial sum array is configured to store a left portion of the sum. A memory is configured to store a right portion of the sum. Q computation logic includes a lookup table and a half-multiplier that compute W bits of the operand Q sequentially in 2 · W w cycles or W w cycles. The W bits of the operand Q are stored in the fourth buffer for use by subsequent W×W operations.
    • 执行蒙哥马利乘法的系统包括:第一乘法器阵列,被配置为将操作数X的W位乘以操作数Y的W位,其中w和W是整数,并且w小于W.第二乘法器阵列被配置为将w 操作数Q的位由模M的W位构成。加法器阵列被配置为添加第一和第二乘法器阵列的输出以产生和。 部分和数组被配置为存储和的左部分。 存储器被配置为存储总和的右部分。 Q计算逻辑包括查找表和半乘法器,其以2WW周期或Ww周期顺序地计算操作数Q的W位。 操作数Q的W位存储在第四缓冲器中,以供随后的W×W操作使用。
    • 8. 发明申请
    • Thermophotovoltaic power supply
    • 热光伏电源
    • US20050121069A1
    • 2005-06-09
    • US10728108
    • 2003-12-03
    • Siaw ChouChang ShuWen YangHong XueZhi Li
    • Siaw ChouChang ShuWen YangHong XueZhi Li
    • H01L31/00H01L31/0216H01L31/04H01L31/068
    • H01L31/0693H01L31/02167H02S10/30Y02E10/544
    • A microthermophotovoltaic (micro-TPV) system is a novel micro power device. The system fully utilizes the high surface-to-volume ratio of a microcombustor, and is able to deliver and electrical power output of 0.5-10 W in a package of the order of centimeters. The system comprises mainly a combustor-emitter, a filter, a photovoltaic (PV) cell array, and cooling fins. The combustor-emitter functions to convert chemical energy into radiative heat energy. The filter is able to recycle a large part of the unusable energy that cannot be converted into electricity by the PV cell array. The PV cell array is used to convert radiative heat energy into electricity. The system has no moving parts. Its fabrication and assembly are relatively easy. As a result, it can be readily used as a power source of micro mechanical devices and portable devices, in which convenience and low cost reliability and ease of maintenance are the key factors of consideration.
    • 微型光伏(micro-TPV)系统是一种新型微功率器件。 该系统充分利用微型燃烧器的高表面积与体积比,并且能够在厘米数量级的包装中输送0.5-10瓦的电力输出。 该系统主要包括燃烧器 - 发射器,过滤器,光伏(PV)电池阵列和冷却片。 燃烧器 - 发射器用于将化学能转化为辐射热能。 过滤器能够回收大量不能用PV电池阵列转换成电的不可用能量。 光伏电池阵列用于将辐射热能转换为电能。 系统没有移动部件。 其制造和组装相对容易。 因此,它可以容易地用作微机械装置和便携式装置的电源,其中便利性和低成本的可靠性和易于维护是考虑的关键因素。