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    • 11. 发明授权
    • Imaging device
    • 成像设备
    • US07792356B2
    • 2010-09-07
    • US11734086
    • 2007-04-11
    • Masaaki SatoShinichiro SaitoHirotake Cho
    • Masaaki SatoShinichiro SaitoHirotake Cho
    • G06K9/00
    • H04N9/646H04N9/045H04N2209/046
    • An imaging device includes an image sensor having a plurality of chromatic color pixels and high-sensitivity pixels having higher sensitivity to incident light than the chromatic color pixels arranged in a checkerboard pattern, a correlation detector that detects correlation of an imaged subject from a signal component of the high-sensitivity pixels and a signal component of the chromatic color pixels, a color judgment block that judges whether or not the imaged subject is of chromatic color from the signal component of the chromatic color pixels, and a pixel interpolator that switches between pixel interpolation methods according to the signal judged in the color judgment block that judges whether or not the subject is of chromatic color, the pixel interpolator giving high priority to interpolation using pixels showing strong correlation based on the information from the correlation detector when the color judgment block judges that the subject is of chromatic color.
    • 成像装置包括具有多个彩色像素的图像传感器和对入射光的灵敏度高于布置在棋盘图案中的彩色像素的高灵敏度像素,相关检测器,其检测来自信号分量的成像对象的相关性 以及彩色像素的信号分量,颜色判断块,根据彩色像素的信号分量判断成像对象是否为彩色;以及像素插值器,其在像素之间切换 根据在颜色判断块中判断的信号判断对象是否为彩色的插值方法,当颜色判断块基于来自相关检测器的信息时,像素内插器对基于来自相关检测器的显示强相关性的像素进行插值高度优先 判断主体是彩色的。
    • 12. 发明申请
    • NETWORK RELAY APPARATUS AND PACKET DISTRIBUTION METHOD
    • 网络继电器和分组分配方法
    • US20100172348A1
    • 2010-07-08
    • US12627380
    • 2009-11-30
    • Shinichiro SaitoXiping LinHaruo Yamashita
    • Shinichiro SaitoXiping LinHaruo Yamashita
    • H04L12/56
    • H04L47/34H04L47/6255
    • The present invention provides a network relay apparatus capable of assuring the prevention of occurrence of order reversion of packets within flows and shifting a packet distribution destination according to load information. The network relay apparatus includes: a packet distribution processor for distributing input packets to thereby achieve load dispersion of packet processing; a statistical information collector for regularly collecting load conditions of respective packet processors; and a distribution information holder for retaining information for specifying the packet distribution destinations upon distribution of the packets. Information about the load conditions of the respective packet processors are compiled and distributed to the packet processor smallest in load. Timing provided to change the packet distribution destination is assumed to be given when a processing waiting queue does not include a packet corresponding to its flow.
    • 本发明提供一种网络中继装置,其能够确保防止流中的分组的顺序倒转发生,并根据负载信息移动分组分发目的地。 网络中继装置包括:分发分发处理器,用于分配输入分组,从而实现分组处理的负载分散; 用于定期收集各个分组处理器的负载状况的统计信息收集器; 以及分发信息保持器,用于在分发分发时保留用于指定分组分发目的地的信息。 关于相应分组处理器的负载条件的信息被编译并分发给负载最小的分组处理器。 当处理等待队列不包含对应于其流的分组时,假定提供用于改变分组分发目的地的定时。
    • 13. 发明申请
    • APPARATUS AND METHOD FOR REMOVING UNBURNED CARBON FROM FLY ASH
    • 从飞灰除去未燃烧的碳的装置和方法
    • US20090308794A1
    • 2009-12-17
    • US12096333
    • 2006-11-28
    • Shinichiro SaitoKazuo AbeKazuyoshi Matsuo
    • Shinichiro SaitoKazuo AbeKazuyoshi Matsuo
    • B03D1/02B09B3/00B09B5/00
    • B03D1/02B01F5/0612B01F5/0614B01F2005/0621B01F2005/0636B03D1/14B03D1/247C04B18/08Y02W30/92C04B20/02
    • An apparatus and a method for removing unburned carbon from fly ash capable of suppressing facility cost and stably conducting performance adjustment depending on property of the fly ash. The method comprises the steps of: adding water to fly ash to produce slurry; adding collector to the slurry, feeding the slurry and the collector to a static-type mixer 4, a venturi pipe 24 or the like to add shearing force to them; adding frother to them to generate air bubbles; and adhering unburned carbon of the fly ash to the air bubbles to raise the unburned carbon. The frother and air can be fed to the static-type mixer or the like together with the slurry and the collector. Depending on the change in property of the fly ash, the number of the static-type mixers or the like used in series can be increased or decreased, and depending on required capacity, the number of the static-type mixers or the like used in parallel may be increased or decreased. The static-type mixer may comprise a guide vane chamber 4b with plurality of guide vanes 4d for converting the slurry and the like, which are fed to the chamber, to spiral flow, and a current cutter chamber 4c with plurality of mushroom-shaped projections 4e for adding shearing force to the slurry and the like.
    • 一种从粉煤灰中除去未燃碳的装置和方法,其能够抑制设备成本并且根据飞灰的性能稳定地进行性能调整。 该方法包括以下步骤:将水添加到飞灰中以产生浆料; 向浆料中加入收集器,将浆料和收集器输送到静态混合器4,文丘里管24等中以向它们增加剪切力; 给他们添加起泡产生气泡; 并将飞灰的未燃烧碳附着到气泡上以提高未燃烧的碳。 起泡剂和空气可以与浆料和收集器一起进料到静态混合器等中。 根据粉煤灰的性质的变化,可以增加或减少串联使用的静态混合机等的数量,根据所需的容量,使用的静态混合机等的数量 平行可以增加或减少。 静态混合器可以包括导向叶片室4b,其具有多个导向叶片4d,用于将供给到室中的浆料等转化成螺旋流;以及具有多个蘑菇状突起的当前切割器室4c 4e用于向浆料等添加剪切力。
    • 17. 发明申请
    • IMAGING DEVICE
    • 成像装置
    • US20080123943A1
    • 2008-05-29
    • US11734086
    • 2007-04-11
    • Masaaki SatoShinichiro SaitoHirotake Cho
    • Masaaki SatoShinichiro SaitoHirotake Cho
    • G06K9/00
    • H04N9/646H04N9/045H04N2209/046
    • An imaging device includes an image sensor having a plurality of chromatic color pixels and high-sensitivity pixels having higher sensitivity to incident light than the chromatic color pixels arranged in a checkerboard pattern, a correlation detector that detects correlation of an imaged subject from a signal component of the high-sensitivity pixels and a signal component of the chromatic color pixels, a color judgment block that judges whether or not the imaged subject is of chromatic color from the signal component of the chromatic color pixels, and a pixel interpolator that switches between pixel interpolation methods according to the signal judged in the color judgment block that judges whether or not the subject is of chromatic color, the pixel interpolator giving high priority to interpolation using pixels showing strong correlation based on the information from the correlation detector when the color judgment block judges that the subject is of chromatic color.
    • 成像装置包括具有多个彩色像素的图像传感器和对入射光的灵敏度高于布置在棋盘图案中的彩色像素的高灵敏度像素,相关检测器,其检测来自信号分量的成像对象的相关性 以及彩色像素的信号分量,颜色判断块,根据彩色像素的信号分量判断成像对象是否为彩色;以及像素插值器,其在像素之间切换 根据在颜色判断块中判断的信号判断对象是否为彩色的插值方法,当颜色判断块基于来自相关检测器的信息时,像素内插器对基于来自相关检测器的显示强相关性的像素进行插值高度优先 判断主体是彩色的。
    • 19. 发明申请
    • Device and method for processing combustion exhaust gas
    • 燃烧废气处理装置及方法
    • US20070086930A1
    • 2007-04-19
    • US10561479
    • 2004-06-28
    • Shinichiro Saito
    • Shinichiro Saito
    • B01D53/94B01D53/34B01D53/56B01D50/00
    • B01D53/8625B01D53/64B01D53/8621B01D53/8662B01D2251/104B01D2251/108
    • [Problems] To suppress an increase in the discharge amount of harmful substances and operating cost in a cement kiln or the like. [Means for Solving Problems] This combustion exhaust gas G processing device comprises a dust collector 6 collecting dust in combustion exhaust gas G, a wet dust collector 7 collecting water soluble components and dust in the combustion exhaust gas G passed through the dust collector 6, and a catalyst tower 12 decomposing and removing NOx and/or dioxins in the combustion exhaust gas G passed through the wet dust collector 7. The device also desirably comprises a reheater 11 heating the combustion exhaust gas G discharged from the wet dust collector 7 at the front stage of the catalyst tower 12, an oxidizer adding device 10 adding an oxidizer to the combustion exhaust gas G passed through the dust collector 6, a solid/liquid separator 16 separating slurry discharged from the wet dust collector 7 into solid and liquid phases, a mercury adsorbing tower 17 adsorbing mercury in liquid separated in the solid/liquid separator 16, and a heat recovering device 13 heating the combustion exhaust gas G discharged from the catalyst tower 12 at the rear stage of the catalyst tower 12.
    • [问题]抑制水泥窑等中的有害物质的排出量和运行成本的增加。 [解决问题的方法]该燃烧废气G处理装置包括收集燃烧废气G中的灰尘的集尘器6,收集通过集尘器6的燃烧废气G中的水溶性成分和灰尘的湿式集尘器7, 以及催化塔12,其分解和除去通过湿式除尘器7的燃烧废气G中的NOx和/或二恶英。该装置还期望地包括再加热器11,其加热从湿式除尘器7排出的燃烧废气G 催化剂塔12的前段,向通过集尘器6的燃烧废气G添加氧化剂的氧化剂添加装置10,将从湿式除尘器7排出的浆料分离成固相和液相的固/液分离器16, 将固体/液体分离器16中分离的液体中的汞吸附在汞吸附塔17上,以及加热燃烧废气的热回收装置13 气体G在催化塔12的后段从催化剂塔12排出。