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    • 1. 发明申请
    • Buffering of data from a data stream having error correction elements
    • 从具有纠错元素的数据流缓冲数据
    • US20060268726A1
    • 2006-11-30
    • US11139506
    • 2005-05-31
    • Jyrki AlamaunuHarri PekonenMikko Savolainen
    • Jyrki AlamaunuHarri PekonenMikko Savolainen
    • G06F11/00
    • H04L1/0052H03M13/09H03M13/1515H03M13/154H03M13/2707H03M13/6505H04L1/0057
    • Data for a second Multi-Protocol Encapsulation-Forward Error Correcting (MPE-FEC) data frame is received while application data from a first MPE-FEC frame is undergoing error correction. The incoming data is buffered in a supplemental buffer having a size smaller than that needed for an entire MPE-FEC frame. As the supplemental buffer is filled, additional data from the second frame is stored in a buffer previously used to store error correction data for the first MPE-FEC frame. When corrected application data from the first MPE-FEC frame is transferred from an application data buffer used to hold application data undergoing correction, the second MPE-FEC frame data is transferred from the supplemental and error correction data buffers to the application data buffer. Additional data for the second frame is then placed directly into the application and error correction data buffers.
    • 在来自第一MPE-FEC帧的应用数据正在进行纠错的同时接收第二多协议封装前向纠错(MPE-FEC)数据帧的数据。 输入数据被缓冲在具有小于整个MPE-FEC帧所需的大小的补充缓冲器中。 当补充缓冲器被填充时,来自第二帧的附加数据被存储在先前用于存储第一MPE-FEC帧的纠错数据的缓冲器中。 当从用于保存正在进行校正的应用数据的应用数据缓冲器传送来自第一MPE-FEC帧的校正应用数据时,第二MPE-FEC帧数据从补充和纠错数据缓冲器传送到应用数据缓冲器。 然后将第二帧的附加数据直接放置到应用程序和纠错数据缓冲区中。
    • 3. 发明授权
    • Method for manufacturing a door frame, welding arrangement and structure of a door frame
    • 门框的制造方法,门框的焊接装置和结构
    • US09427827B2
    • 2016-08-30
    • US13318704
    • 2010-05-04
    • Mikko SavolainenTimo Tynkkynen
    • Mikko SavolainenTimo Tynkkynen
    • B23K28/02B23K37/02E04H12/00
    • B23K28/02B23K37/0229E04H12/003
    • Manufacturing method, welding arrangement and door frame structure for a door frame (21) of a windmill tower (10), wherein a hole (15) is made in the tower shell (10) for the door and a door frame is placed in the hole and welded on the shell. In the method, the shape of the door frame for the shell and the shape of the surface of the shell at the opening (15) to be made are measured with a measuring sensor (40). Based on the measurements, a cutting torch (41) is controlled so that an opening corresponding to the shape of the door frame is cut in the shell and bevels (16, 17) are cut in the edge of the opening on both sides. The door frame is welded on the shell with a weld (24), such as a double bevel, double J or square butt weld, from the inside and the outside of the shell.
    • 一种用于风车塔(10)的门框(21)的制造方法,焊接布置和门框结构,其中在用于门的塔壳(10)中形成有孔(15),并且门框架 孔和焊接在壳上。 在该方法中,用测量传感器(40)测量用于壳体的门框的形状和壳体在开口(15)处的表面的形状。 基于这些测量,控制切割炬(41),使得在壳体中切割与门框的形状相对应的开口,并且在两侧的开口的边缘上切割斜面(16,17)。 门框从外壳的内外侧焊接在外壳上,具有焊接(24),例如双斜面,双J或方形对接焊缝。
    • 4. 发明申请
    • METHOD FOR MANUFACTURING A DOOR FRAME, WELDING ARRANGEMENT AND STRUCTURE OF A DOOR FRAME
    • 制造门框的方法,门框的焊接布置和结构
    • US20120102857A1
    • 2012-05-03
    • US13318704
    • 2010-05-04
    • Mikko SavolainenTimo Tynkkynen
    • Mikko SavolainenTimo Tynkkynen
    • E06B1/52B23K11/24B23K11/02
    • B23K28/02B23K37/0229E04H12/003
    • Manufacturing method, welding arrangement and door frame structure for a door frame (21) of a windmill tower (10), wherein a hole (15) is made in the tower shell (10) for the door and a door frame is placed in the hole and welded on the shell. In the method, the shape of the door frame for the shell and the shape of the surface of the shell at the opening (15) to be made are measured with a measuring sensor (40). Based on the measurements, a cutting torch (41) is controlled so that an opening corresponding to the shape of the door frame is cut in the shell and bevels (16, 17) are cut in the edge of the opening on both sides. The door frame is welded on the shell with a weld (24), such as a double bevel, double J or square butt weld, from the inside and the outside of the shell.
    • 一种用于风车塔(10)的门框(21)的制造方法,焊接布置和门框结构,其中在用于门的塔壳(10)中形成有孔(15),并且门框架 孔和焊接在壳上。 在该方法中,用测量传感器(40)测量用于壳体的门框的形状和壳体在开口(15)处的表面的形状。 基于这些测量,控制切割炬(41),使得在壳体中切割与门框的形状相对应的开口,并且在两侧的开口的边缘上切割斜面(16,17)。 门框从外壳的内外侧焊接在外壳上,具有焊接(24),例如双斜面,双J或方形对接焊缝。