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    • 22. 发明授权
    • Multiplex fiber optic biosensor and detection method by using the same
    • 复用光纤生物传感器及其检测方法采用相同的方法
    • US09464986B2
    • 2016-10-11
    • US14164935
    • 2014-01-27
    • National Chung Cheng University
    • Lai-Kwan ChauChen-Han HuangHisng-Ying LinYu-Chia Liu
    • G01N21/55G01N21/552G01N21/77
    • G01N21/554G01N21/7703G01N2021/7793
    • A multiplex fiber optic biosensor including an optical fiber, a plurality of noble metal nanoparticle layers, a plurality of light sources and a light source function generator is disclosed. The optical fiber includes a plurality of sensing regions which are unclad regions of the optical fiber so that the fiber core is exposed, wherein the noble metal nanoparticle layers are set in each sensing regions. The light sources emit light with different wavelengths, and the noble metal nanoparticle layers absorb the lights with different wavelengths, respectively. The light sources emit the lights in different timing sequences or different carrier frequencies, wherein when the lights propagate along the optical fiber in accordance with the different timing sequences or the different carrier frequencies, a detection unit detects particle plasmon resonance signals produced by interactions between the different noble metal nanoparticle layers and the corresponding analytes.
    • 公开了一种包括光纤,多个贵金属纳米颗粒层,多个光源和光源功能发生器的复用光纤生物传感器。 光纤包括作为光纤的未包围区域的多个感测区域,使得纤维芯体被暴露,其中贵金属纳米颗粒层被设置在每个感测区域中。 光源发出不同波长的光,贵金属纳米粒子层分别吸收不同波长的光。 光源以不同的定时序列或不同的载波频率发射光,其中当光根据不同的定时序列或不同的载波频率沿着光纤传播时,检测单元检测由等离子体共振信号 不同的贵金属纳米颗粒层和相应的分析物。
    • 24. 发明授权
    • Light-mixing flashlight
    • 轻混合手电筒
    • US09341323B1
    • 2016-05-17
    • US14658515
    • 2015-03-16
    • National Chung Cheng University
    • Hsiang-Chen WangChung-Yi LinYuan-De SuZhi-Lin Hu
    • F21L4/02F21V33/00F21K99/00F21Y101/02
    • F21K9/54F21L4/027F21V7/0008F21Y2113/13F21Y2115/10
    • A light-mixing flashlight has a body, three light-emitting diodes, three first reflectors, and three second reflectors. The body has a mounting surface formed in the body, a body opening opposite to the mounting surface, and three light recesses formed in an interior of the body. The light-emitting diodes are mounted in the light recesses, and are respectively a red light, a green light, and a blue light light-emitting diode. The first reflectors are formed as parabolic mirrors and are respectively mounted in the light recesses via a working angle. An opening of each first reflector faces toward the corresponding light-emitting diode. The second reflectors are formed as spherical mirrors, are mounted on the mounting surface, and respectively correspond in position to the first reflectors. Therefore, the light-mixing flashlight has an improved emitting efficiency.
    • 光混合手电筒有一个主体,三个发光二极管,三个第一反射器和三个第二反射器。 主体具有形成在主体中的安装表面,与安装表面相对的主体开口,以及形成在主体内部的三个光凹部。 发光二极管安装在光凹部中,分别为红色光,绿色光和蓝色发光二极管。 第一反射镜形成为抛物面镜,分别通过工作角度安装在光凹槽中。 每个第一反射器的开口朝向相应的发光二极管。 第二反射器形成为球面镜,安装在安装表面上,并且分别对应于第一反射器的位置。 因此,轻混合手电筒具有改善的发射效率。
    • 25. 发明授权
    • Double-sided grating waveguide biosensor
    • 双面光栅波导生物传感器
    • US09140857B2
    • 2015-09-22
    • US14057469
    • 2013-10-18
    • NATIONAL CHUNG CHENG UNIVERSITY
    • Wen-Hsin HsiehLai-Kwan ChauHsun-Yuan LiWei-Chun Hsu
    • G02B6/00G02B6/34G01N21/77G02B6/124
    • G02B6/34G01N21/7743G02B6/124
    • Disclosed is a double-sided grating waveguide biosensor. The double-sided grating waveguide biosensor is used to sense the properties of a sample solution. The double-sided grating waveguide biosensor comprises a sequential stack of a plastic grating having a grating part, a waveguide layer having a double-sided grating structure, and a channel chip. Furthermore, the sample solution is guided into the channel chip; the light beam is coupled into the waveguide layer via the double-sided grating structure, propagates in the waveguide layer, and penetrates outward. The double-sided waveguide biosensor detects the properties of the sample solution via a variation of a light beam intensity of the outgoing light beam.
    • 公开了一种双面光栅波导生物传感器。 双面光栅波导生物传感器用于检测样品溶液的性质。 双面光栅波导生物传感器包括具有光栅部分的塑料光栅的顺序堆叠,具有双面光栅结构的波导层和通道芯片。 此外,样品溶液被引导到通道芯片中; 光束通过双面光栅结构耦合到波导层中,在波导层中传播并向外穿透。 双面波导生物传感器通过出射光束的光束强度的变化来检测样品溶液的性质。
    • 26. 发明申请
    • Multi-Threshold Storage Device and Method
    • 多阈值存储设备和方法
    • US20150242130A1
    • 2015-08-27
    • US14292577
    • 2014-05-30
    • National Chung Cheng University
    • Rong-Guey CHANGChia-Jung CHEN
    • G06F3/06
    • G06F3/061G06F3/064G06F3/0643G06F3/068
    • A multi-threshold storage device and method is disclosed herein. The device comprises at least one hard disc drive (HDD), at least one solid state drive (SSD), and a controller electrically connected with HDD and SSD. The controller determines whether to store a file in HDD or SSD according to whether the read/write (r/w) count of the file exceeds a preset r/w count, whether the storage space occupied by the file exceeds a preset storage space, and whether the file is a popular file. The present invention uses multiple thresholds to configure storage positions of files, improve the economical efficiency of file storage and raise the overall performance of a server system.
    • 本文公开了一种多阈值存储装置和方法。 该装置包括至少一个硬盘驱动器(HDD),至少一个固态驱动器(SSD)以及与HDD和SSD电连接的控制器。 控制器根据文件的读/写(r / w)计数是否超过预设的r / w计数,确定文件占用的存储空间是否超过预设存储空间,确定是否将文件存储在HDD或SSD中, 以及文件是否是受欢迎的文件。 本发明使用多个阈值来配置文件的存储位置,提高文件存储的经济性并提高服务器系统的整体性能。
    • 27. 发明授权
    • Video device for realtime pedaling frequency estimation
    • 用于实时踏板频率估计的视频设备
    • US09064153B2
    • 2015-06-23
    • US14255604
    • 2014-04-17
    • National Chung Cheng University
    • Tay-Jyi LinChing-Wei YehYuan-Hsiang MiaoShau-Chian Tang
    • G06K9/00G01P3/36G06T7/20H04N7/18G01P15/00
    • G06K9/00711A61B5/11A61B5/1128G06K9/00342G06K9/00348G06K9/00791G06T7/20G06T2207/30221H04N7/18
    • A video device for realtime pedaling frequency estimation is mounted on a bike and comprises an image capture unit capturing continuous dynamic images of an upper body of a biker; an image recognition unit recognizing images of symmetric regions of the biker and images of swings of the symmetric regions from the continuous dynamic images; a microprocessor calculating a frequency of periodical swings of the biker from the images of the symmetric regions and the images of the swings of the symmetric regions, and then obtaining a pedaling frequency; and a display device presenting the pedaling frequency, wherein a widely-used intelligent handheld device replaces the sensors, display device, and complicated circuits of the conventional cyclometer, and wherein a novel image recognition technology is used to measure the pedaling frequency with a considerable accuracy in a lower cost and a convenient way.
    • 用于实时踏板频率估计的视频装置安装在自行车上,并且包括拍摄骑自行车的上身的连续动态图像的图像捕获单元; 图像识别单元,从所述连续动态图像识别所述骑自行车的对称区域的图像和所述对称区域的摆动图像; 微处理器从对称区域的图像和对称区域的摆动图像计算骑自行车的周期性摆动的频率,然后获得踏板频率; 以及呈现踩踏频率的显示装置,其中广泛使用的智能手持装置取代传统的循环计的传感器,显示装置和复杂电路,并且其中使用新颖的图像识别技术以相当的精度测量踏板频率 以较低的成本和方便的方式。
    • 28. 发明申请
    • VIDEO DEVICE FOR REALTIME PEDALING FREQUENCY ESTIMATION
    • 用于实时预测频率估计的视频设备
    • US20150146918A1
    • 2015-05-28
    • US14255604
    • 2014-04-17
    • National Chung Cheng University
    • Tay-Jyi LINChing-Wei YEHYuan-Hsiang MiaoShau-Chian TANG
    • G06K9/00G06T7/20H04N7/18G01P3/36
    • G06K9/00711A61B5/11A61B5/1128G06K9/00342G06K9/00348G06K9/00791G06T7/20G06T2207/30221H04N7/18
    • A video device for realtime pedaling frequency estimation is mounted on a bike and comprises an image capture unit capturing continuous dynamic images of an upper body of a biker; an image recognition unit recognizing images of symmetric regions of the biker and images of swings of the symmetric regions from the continuous dynamic images; a microprocessor calculating a frequency of periodical swings of the biker from the images of the symmetric regions and the images of the swings of the symmetric regions, and then obtaining a pedaling frequency; and a display device presenting the pedaling frequency, wherein a widely-used intelligent handheld device replaces the sensors, display device, and complicated circuits of the conventional cyclometer, and wherein a novel image recognition technology is used to measure the pedaling frequency with a considerable accuracy in a lower cost and a convenient way.
    • 用于实时踏板频率估计的视频装置安装在自行车上,并且包括拍摄骑自行车的上身的连续动态图像的图像捕获单元; 图像识别单元,从所述连续动态图像识别所述骑自行车的对称区域的图像和所述对称区域的摆动图像; 微处理器从对称区域的图像和对称区域的摆动图像计算骑自行车的周期性摆动的频率,然后获得踏板频率; 以及呈现踩踏频率的显示装置,其中广泛使用的智能手持装置取代传统的循环计的传感器,显示装置和复杂电路,并且其中使用新颖的图像识别技术以相当的精度测量踏板频率 以较低的成本和方便的方式。
    • 30. 发明申请
    • METHOD FOR ADAPTIVE FOCUSING
    • 自适应聚焦方法
    • US20150116577A1
    • 2015-04-30
    • US14161859
    • 2014-01-23
    • NATIONAL CHUNG CHENG UNIVERSITY
    • HUEI-YUNG LINPU-CHUAN KANG
    • H04N5/232G02B7/36
    • H04N5/23212G02B7/36G02B7/38G03B13/36
    • A focusing method having depth-of-field adaptability and aperture adaptability is provided. The method is applied to an image capture unit. A plurality of first images are captured in an image capture window according to a plurality of objects for obtaining a plurality of distances between the plurality objects and the image capture unit. Thereby, a focus distance of the image capture unit is given. Then, according to a maximum value and a minimum vale of the plurality of distances, the first aperture is adjusted to a second aperture, so that the image capture unit can acquire a complete depth of field by means of the second aperture and the focus distance. Accordingly, the preferred focus distance and depth of field satisfying the requirements for theme or special depth of field can be acquired. In addition, image capturing can be performed for a shorter exposure time.
    • 提供了具有景深适应性和光圈适应性的聚焦方法。 该方法应用于图像捕获单元。 根据用于获得多个对象和图像捕获单元之间的多个距离的多个对象,在图像捕获窗口中捕获多个第一图像。 由此,给出了图像拍摄单元的对焦距离。 然后,根据多个距离的最大值和最小值,将第一孔径调整为第二孔径,使得图像捕获单元可以通过第二孔径和聚焦距离获得完整的景深 。 因此,可以获得满足主题或特殊景深要求的优选聚焦距离和景深。 此外,可以在更短的曝光时间内执行图像捕获。