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    • 1. 发明授权
    • Data multiplexing system having at least one low-speed interface circuit
connected to a bus
    • 具有连接到总线的至少一个低速接口电路的数据复用系统
    • US5757806A
    • 1998-05-26
    • US846165
    • 1997-04-28
    • Hiroki KoyamaYoshihiro AshiHiroyuki FujitaMichael A. Wright
    • Hiroki KoyamaYoshihiro AshiHiroyuki FujitaMichael A. Wright
    • H04J3/08H04J3/00H04J3/04H04J3/16H04J3/22H04L5/22
    • H04J3/047H04J3/1611
    • A data multiplexing system which includes a plurality of data multiplexing buses through which a plurality of low-speed digital signals are collected into, and distributed from, a multiplexer/demultiplxer. In a data multiplexing mode, the low-speed digital signals entered from a plurality of low-speed transmission lines have their signal format converted by respectively corresponding low-speed interface circuits, and the resulting signals are multiplexed in time slots designated within a multiplexed signal of primary level on the up bus line of the corresponding data multiplexing bus. The high-speed multiplexer multiplexes the collected signals up to a predetermined signal level and sends the resulting secondary multiplexed signal to a high-speed interface module having a high-speed transmission line interface. The high-speed interface module converts the received secondary multiplexed signal and sends the resulting signal to the high-speed transmission line. The signal of the high-speed transmission line is processed by the high-speed interface module and the high-speed demultiplexer, and the low-speed digital signals are sent to the low-speed transmission lines.
    • 一种数据复用系统,包括多个数据复用总线,多个低速数字信号通过该数据复用总线被收集到多路复用器/多分频器中并从多路复用器/多分频器分配。 在数据复用模式中,从多个低速传输线输入的低速数字信号通过分别对应的低速接口电路进行信号格式转换,并将得到的信号在复用信号中指定的时隙中复用 在相应数据复用总线的上行总线上的主级。 高速多路复用器将收集的信号多路复用到预定的信号电平,并将得到的辅助复用信号发送到具有高速传输线接口的高速接口模块。 高速接口模块转换接收到的二次复用信号,并将结果信号发送到高速传输线。 高速传输线的信号由高速接口模块和高速解复用器进行处理,低速数字信号被发送到低速传输线。
    • 3. 发明授权
    • Data multiplexing system having at least one low-speed interface circuit
connected to a bus
    • 具有连接到总线的至少一个低速接口电路的数据复用系统
    • US5452307A
    • 1995-09-19
    • US326236
    • 1994-10-20
    • Hiroki KoyamaYoshihiro AshiHiroyuki FujitaMichael A. Wright
    • Hiroki KoyamaYoshihiro AshiHiroyuki FujitaMichael A. Wright
    • H04J3/08H04J3/00H04J3/04H04J3/16H04J3/22H04L5/22H04Q11/04
    • H04J3/047H04J3/1611
    • A data multiplexing system comprising a plurality of data multiplexing buses through which a plurality of low-speed digital signals are collected into, and distributed from, a multiplexer/demultiplexer. In a data multiplexing mode, the low-speed digital signals entered from a plurality of low-speed transmission lines have their signal format converted by respectively corresponding low-speed interface circuits, and the resulting signals are multiplexed in time slots designated within a multiplexed signal of primary level on the up bus line of the corresponding data multiplexing bus, under the controls of respectively corresponding bus control circuits. The high-speed multiplexer collects the primary multiplexed signals on the up bus lines of the plurality of data multiplexing buses, and further multiplexes the collected signals up to a predetermined signal level. Thereafter, it sends the resulting secondary multiplexed signal to a high-speed interface module having a high-speed transmission line interface. The high-speed interface module converts the received secondary multiplexed signal so as to match the interface of a high-speed transmission line, and sends the resulting signal to the high-speed transmission line. In a data demultiplexing mode, the signal of the high-speed transmission line is processed by the high-speed interface module and the high-speed demultiplexer, and the resulting signals are distributed through the down bus lines of the data multiplexing buses so as to send the low-speed digital signals to the low-speed transmission lines.
    • 一种数据复用系统,包括多个数据复用总线,多个低速数字信号通过多路复用总线被收集到多路复用器/解复用器中并从多路复用器/解复用器中分发。 在数据复用模式中,从多个低速传输线输入的低速数字信号通过分别对应的低速接口电路进行信号格式转换,并将得到的信号在复用信号中指定的时隙中复用 在对应数据复用总线的上行总线上的主电平,分别对应于总线控制电路的控制。 高速多路复用器在多个数据复用总线的上行总线上收集一次多路复用信号,并将收集的信号进一步多路复用到预定的信号电平。 此后,它将所得的二次复用信号发送到具有高速传输线接口的高速接口模块。 高速接口模块将接收到的二次复用信号转换为与高速传输线路的接口相匹配,并将结果信号发送到高速传输线路。 在数据解复用模式中,高速传输线的信号由高速接口模块和高速解复用器进行处理,所得到的信号通过数据复用总线的下行总线进行分配,以便 将低速数字信号发送到低速传输线。
    • 4. 发明授权
    • Method and apparatus for high speed dynamic image region extraction
    • 高速动态图像区域提取的方法和装置
    • US5333213A
    • 1994-07-26
    • US876484
    • 1992-04-30
    • Hiroki KoyamaSeiki Inoue
    • Hiroki KoyamaSeiki Inoue
    • H04N5/262G06T7/20G06K9/46G06F15/66
    • G06T7/2033
    • An image region extraction capable of extracting an image of a significant moving object in a dynamic image accurately and easily at high speed. The operator is required to manually enter the rough boundaries for the significant region in the first two fields of the dynamic image only, and the subsequent extraction operation for each subsequent field of the dynamic image is carried out automatically according to the conjectured rough boundary obtained on a basis of the extraction regions for the two fields immediately preceding that field. The extraction region for the significant region is obtained from the rough boundary on a basis of an original image of a respective field of the dynamic image, and the extracted image of the significant region in each field of the dynamic image is obtained by multiplying the original image of each field and the extraction region for the significant region in each field.
    • 一种能够以高速准确且容易地在动态图像中提取重要移动物体的图像的图像区域提取。 操作者需要手动输入动态图像的前两个字段中的有效区域的粗略边界,并且动态图像的每个后续字段的后续提取操作将根据获得的猜想粗糙边界自动执行 作为紧接在该字段之前的两个字段的提取区域的基础。 基于动态图像的相应场的原始图像,从粗略边界获得有意义区域的提取区域,并且通过将原始图像的原始图像乘以动态图像的每个场中的有效区域的提取图像来获得 每个场的图像和每个场中的有效区域的提取区域。
    • 5. 发明授权
    • Digital camera
    • 数码相机
    • US07751702B2
    • 2010-07-06
    • US11438760
    • 2006-05-23
    • Hiroki Koyama
    • Hiroki Koyama
    • G03B17/00H04N1/00
    • H04N1/00278H04N2201/0065H04N2201/0084
    • The digital camera capable of printing shot images by directly connecting a digital camera to the printing device, and even if the printing device does not support at least one of the index printing and the multiple printing, a synthetic image corresponding to the printing mode not supported by the printing device is generated by the digital camera and is sent to the printing device. Thereby, even if the printing device does not support one of, or both of the index printing and the multiple printing, the index printing and/or the multiple printing can be conducted.
    • 能够通过将数字照相机直接连接到打印装置来打印拍摄图像的数字照相机,即使打印装置不支持索引打印和多次打印中的至少一个,也不支持与不支持打印模式对应的合成图像 由打印设备由数码相机生成并被发送到打印设备。 因此,即使打印装置不支持索引打印和多次打印中的一种或两种,也可以进行索引打印和/或多重打印。
    • 8. 发明授权
    • Method of producing middle distillate products by two-stage hydrocracking and hydrocracking apparatus
    • 通过两级加氢裂化和加氢裂化装置生产中间馏分产物的方法
    • US06576119B2
    • 2003-06-10
    • US09794144
    • 2001-02-28
    • Katsuaki IshidaManabu KobayashiHiroki KoyamaSeiji TogawaFutoshi Sakaguchi
    • Katsuaki IshidaManabu KobayashiHiroki KoyamaSeiji TogawaFutoshi Sakaguchi
    • C10G6502
    • C10G65/10C10G49/002
    • The two-stage hydrocracking process of the present invention comprises bringing the first-stage feed oil containing a hydrocarbon component and having a boiling point of 316° C. or higher into contact with the first-stage catalyst in the presence of hydrogen to obtain a first-stage product; separating the first-stage product into heavy component and light component containing the middle distillate products; bringing the second-stage feed oil containing heavy component of the first-stage reaction product into contact with the second-stage catalyst in the presence of hydrogen to obtain the second-stage product; separating the second-stage product into heavy component and light component comprising middle distillate products and recycling part of the heavy component of the second-stage product to the second-stage feed oil. Hydrocracking activity of the first-stage catalyst is higher than hydrocracking activity of the second-stage catalyst.
    • 本发明的两级加氢裂化方法包括使含有烃成分的沸点为316℃以上的第一级原料油在氢存在下与第一级催化剂接触,得到 第一阶段产品; 将第一阶段产品分离成含有中间馏分产物的重组分和轻组分; 使含有第一级反应产物的重组分的第二级进料油在氢气存在下与第二级催化剂接触以获得第二级产物; 将第二级产物分离成包含中间馏分产物的重组分和轻组分,并将第二阶段产物的重组分的一部分再循环到第二阶段进料油中。 第一级催化剂的加氢裂化活性高于第二级催化剂的加氢裂化活性。
    • 10. 发明授权
    • Method and apparatus for stripping sulfur-containing compounds from hydrocarbon feed stock in hydrorefining of petroleum distillates
    • 在石油馏分加氢精制中从烃原料中汽提含硫化合物的方法和装置
    • US07001503B1
    • 2006-02-21
    • US09889241
    • 2000-01-14
    • Hiroki KoyamaYuichi Takahashi
    • Hiroki KoyamaYuichi Takahashi
    • C10G45/02C10G65/02B01J8/04
    • C10G49/002C10G65/04
    • A unit for hydrorefining of hydrocarbon crude oil comprising sulfur-containing compounds comprises first catalyst layer 33 and second catalyst layer 38, top space 34 for separating vapor component and liquid component, bottom space 36, and valve tray 35 that divides top space 34 and bottom space 36. Hydrogen released from hydrogen nozzle 40 placed in the bottom space is passed through liquid component that has accumulated in the valve tray and stripping of liquid components is performed. Hydrogen released from hydrogen nozzle 40 is again introduced, to second catalyst layer 38 as a cocurrent with the stripped liquid component. By stripping, it is possible to reduce the sulfur content, the nitrogen content and reduce the aromatic content of the hydrocarbon crude oil when compared to the conventional method. Since the hydrorefining unit has a simple structure, the unit can be easily made by modifying existing units.
    • 包含含硫化合物的烃原油的加氢精制装置包括第一催化剂层33和第二催化剂层38,用于分离蒸气成分和液体组分的顶部空间34,底部空间36和将塔顶空间34和底部 空间36。 从放置在底部空间的氢喷嘴40释放的氢通过积聚在阀盘中的液体成分,并进行液体成分的剥离。 从氢喷嘴40释放的氢气再次被引入到与汽提的液体组分并流的第二催化剂层38。 通过汽提,与常规方法相比,可以降低烃原油的硫含量,氮含量和降低烃原油的芳烃含量。 由于加氢精制装置具有简单的结构,所以可以通过改变现有的单元容易地制造该装置。