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    • 1. 发明授权
    • Coding apparatus, decoding apparatus, coding method, decoding method, computer readable medium and computer data signal
    • 编码装置,解码装置,编码方法,解码方法,计算机可读介质和计算机数据信号
    • US07382294B2
    • 2008-06-03
    • US11519947
    • 2006-09-13
    • Taro YokoseMasao MoritaTomoki Taniguchi
    • Taro YokoseMasao MoritaTomoki Taniguchi
    • H03M7/32H04N7/42
    • G06T9/004
    • A coding apparatus includes a predicting unit, an intermediate-code generating unit, a first coding unit and a second coding unit. The predicting unit generates a piece of prediction data based on each piece of pixel data constituting a color image. The intermediate-code generating unit compares each piece of prediction data with the corresponding piece of pixel data, to generate an intermediate code in accordance with whether or not a difference between each piece of prediction data and the corresponding piece of pixel data is in a predetermined range. The first coding unit performs entropy coding on the generated intermediate code. The second coding unit performs entropy coding on the generated intermediate code. The intermediate-code generating unit assigns each generated intermediate code to either of the first and second coding units according to whether or not the difference is in the predetermined range.
    • 编码装置包括预测单元,中间码产生单元,第一编码单元和第二编码单元。 预测单元基于构成彩色图像的每个像素数据产生一条预测数据。 中间码产生单元将每条预测数据与对应的像素数据进行比较,以根据每条预测数据和对应的像素数据之间的差是否处于预定的方式来生成中间码 范围。 第一编码单元对生成的中间码进行熵编码。 第二编码单元对生成的中间码进行熵编码。 中间码产生单元根据该差是否在预定范围内,将所生成的中间码分配给第一编码单元和第二编码单元。
    • 3. 发明申请
    • GAS TURBINE ENGINE
    • 气体涡轮发动机
    • US20130034451A1
    • 2013-02-07
    • US13582394
    • 2011-02-21
    • Tomoki TaniguchiRyozo Tanaka
    • Tomoki TaniguchiRyozo Tanaka
    • F01D25/00F01D25/12F01D5/18
    • F01D5/085
    • A gas turbine engine comprises a hollow rotor including a plurality of rotor segments stacked and coupled together in a direction of its center axis and forming at least one of a compressor and a turbine; and a pipe unit inserted into an inner space of the rotor in the center axis direction. In the gas turbine engine, a weight distribution of the pipe unit within an axial transverse section is set eccentric with respect to the center axis of the rotor. In this way, a gas turbine engine which is high in performance and reliability is provided, in which a pipe provided in an inner space of the rotor to transport a cooling medium or lay out a cable, etc., is prevented from whirling.
    • 燃气涡轮发动机包括中空转子,其包括多个转子段,所述多个转子段在其中心轴线的方向上堆叠并耦合在一起并形成压缩机和涡轮机中的至少一个; 以及在中心轴方向插入转子的内部空间的管单元。 在燃气涡轮发动机中,管单元在轴向横截面内的重量分布被设置为相对于转子的中心轴偏心。 以这种方式,提供了一种具有高性能和可靠性的燃气涡轮发动机,其中设置在转子的内部空间中的输送冷却介质或布置电缆等的管被防止旋转。
    • 5. 发明申请
    • GAS TURBINE AND TURBINE STATIONARY BLADE FOR SAME
    • 燃气涡轮机和涡轮机静叶片
    • US20130028727A1
    • 2013-01-31
    • US13641063
    • 2011-04-11
    • Yuji ShinodaTomoki Taniguchi
    • Yuji ShinodaTomoki Taniguchi
    • F03B3/16
    • F01D9/065F01D9/02F05D2250/185F05D2260/20F05D2260/201
    • A gas turbine engine and a turbine stator assembly which is capable of being cooled effectively with a small amount of air. The stator assembly comprises a stator vane disposed to be exposed to a combustion gas passage. The stator vane comprises a cooling passage defined therein. The cooling passage is disposed on an upstream of the gas turbine engine and extending in a radial direction with respect to a central axis of the gas turbine engine. The stator vane also has an inlet communicated to a radially outward end of the cooling passage. The stator vane further has an adjustment member secured to the stator vane so that it covers the inlet. The adjustment member has two apertures for guiding a cooling air radially inwardly through the inlet into the cooling passage. The two apertures are spaced away from each other along a camber line of the stator vane.
    • 一种能够以少量空气有效地冷却的燃气涡轮发动机和涡轮机定子组件。 定子组件包括设置成暴露于燃烧气体通道的定子叶片。 定子叶片包括限定在其中的冷却通道。 冷却通道设置在燃气涡轮发动机的上游并相对于燃气涡轮发动机的中心轴线在径向方向上延伸。 定子叶片还具有连接到冷却通道的径向外端的入口。 定子叶片还具有固定到定子叶片上的调节构件,以便它覆盖入口。 调节构件具有用于将冷却空气径向向内引导通过入口进入冷却通道的两个孔。 两个孔沿着定子叶片的外倾线彼此间隔开。
    • 8. 发明授权
    • Gas turbine and turbine stationary blade for same
    • 燃气轮机和涡轮固定刀片相同
    • US09234432B2
    • 2016-01-12
    • US13641063
    • 2011-04-11
    • Yuji ShinodaTomoki Taniguchi
    • Yuji ShinodaTomoki Taniguchi
    • F01D25/12F01D9/06F01D9/02
    • F01D9/065F01D9/02F05D2250/185F05D2260/20F05D2260/201
    • A gas turbine engine and a turbine stator assembly which is capable of being cooled effectively with a small amount of air. The stator assembly comprises a stator vane disposed to be exposed to a combustion gas passage. The stator vane comprises a cooling passage defined therein. The cooling passage is disposed on an upstream of the gas turbine engine and extending in a radial direction with respect to a central axis of the gas turbine engine. The stator vane also has an inlet communicated to a radially outward end of the cooling passage. The stator vane further has an adjustment member secured to the stator vane so that it covers the inlet. The adjustment member has two apertures for guiding a cooling air radially inwardly through the inlet into the cooling passage. The two apertures are spaced away from each other along a camber line of the stator vane.
    • 一种能够以少量空气有效地冷却的燃气涡轮发动机和涡轮机定子组件。 定子组件包括设置成暴露于燃烧气体通道的定子叶片。 定子叶片包括限定在其中的冷却通道。 冷却通道设置在燃气涡轮发动机的上游并相对于燃气涡轮发动机的中心轴线在径向方向上延伸。 定子叶片还具有连接到冷却通道的径向外端的入口。 定子叶片还具有固定到定子叶片上的调节构件,以便它覆盖入口。 调节构件具有用于将冷却空气径向向内引导通过入口进入冷却通道的两个孔。 两个孔沿着定子叶片的外倾线彼此间隔开。
    • 9. 发明申请
    • IMAGE PROCESSING APPARATUS, IMAGE PROCESSING METHOD, AND NON-TRANSITORY COMPUTER READABLE MEDIUM STORING IMAGE PROCESSING PROGRAM
    • 图像处理设备,图像处理方法和非中继计算机可读介质存储图像处理程序
    • US20120243798A1
    • 2012-09-27
    • US13247558
    • 2011-09-28
    • Taro YOKOSETomoki TANIGUCHI
    • Taro YOKOSETomoki TANIGUCHI
    • G06K9/36
    • H04N19/93H04N19/61
    • An image processing apparatus includes an image receiving unit receiving an image, a conversion unit converting the received image, a separation unit separating the converted image into pixel synchronization information and pixel asynchronization information, a first encoding unit encoding the pixel synchronization information, a second encoding unit encoding the pixel asynchronization information, a first decoding unit decoding a code encoded by the first encoding unit to generate the pixel synchronization information, a second decoding unit decoding a code encoded by the second encoding unit to generate the pixel asynchronization information, a synthesis unit synthesizing the decoded pixel synchronization information with the decoded pixel asynchronization information on the basis of the pixel synchronization information, a reverse conversion unit performing a conversion process reverse to the conversion process of the conversion unit on the synthesized information, and an output unit outputting the image converted by the reverse conversion unit.
    • 一种图像处理装置,包括接收图像的图像接收单元,转换接收图像的转换单元,将转换的图像分离为像素同步信息和像素异步信息的分离单元,对像素同步信息进行编码的第一编码单元,第二编码 编码像素异步信息的单元,对由第一编码单元编码的代码进行解码以生成像素同步信息的第一解码单元,对由第二编码单元编码的代码进行解码以生成像素异步信息的第二解码单元,合成单元 基于像素同步信息,将解码的像素同步信息与解码的像素异步信息合成;反转换单元,其执行与转换单元对合成信息的转换处理相反的转换处理;以及输出单元 t输出由逆转换单元转换的图像。