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    • 5. 发明授权
    • Editing method and editing apparatus
    • 编辑方法和编辑装置
    • US06414999B1
    • 2002-07-02
    • US09315668
    • 1999-05-20
    • Nobuhiro IgiKoji ObataMotoki Kato
    • Nobuhiro IgiKoji ObataMotoki Kato
    • H04B166
    • G11B27/036G06T9/007G11B27/034G11B2220/20
    • An edit point of an earlier GOP1 is placed after an I picture I22. In addition, the edit point is not placed immediately after an I or P picture. Thus, the GOP1 is decoded. A stream placed after the edit point (a P picture and later pictures) is discarded. B pictures B26 and B27 placed after a P picture P25 are re-encoded with a forward moving vector Fw. The remaining pictures other than B pictures B26 and B27 are re-encoded with encoding information used in a decoding process. Since an edit point of a later GOP2 is not placed before the I picture I2, the GOP2 is decoded. A stream placed before the edit point (pictures B0 to P5) is discarded. The first P picture P8 is changed to an I picture. Thereafter, the re-encoding process is performed. The P picture P8 changed from the I picture is used as a predictive reference picture. With the P picture P8, a backward moving vector Bk is obtained. With only the moving vector Bk, the B pictures B6 and B7 placed before the P picture P8 are re-encoded.
    • 较早GOP1的编辑点放置在I图片I22之后。 另外,编辑点不会立即放置在I或P图像之后。 因此,GOP1被解码。 放置在编辑点之后的流(P图片和更晚的图片)被丢弃。 放置在P图像P25之后的B图像B26和B27用前向移动矢量Fw重新编码。 除了B图像B26和B27之外的其余图像被用解码处理中使用的编码信息重新编码。 由于稍后GOP2的编辑点未放置在I图像I2之前,因此对GOP2进行解码。 放置在编辑点之前的流(图B0至P5)被丢弃。 第一个P图像P8被更改为I图像。 此后,执行重新编码处理。 从I图像改变的P图像P8用作预测参考图像。 利用P图像P8,获得向后移动矢量Bk。 只有移动矢量Bk,放置在P图像P8之前的B图像B6和B7被重新编码。
    • 6. 发明授权
    • Encoding apparatus and method, and multiplexing apparatus and method
    • 编码装置和方法,以及多路复用装置和方法
    • US07394851B2
    • 2008-07-01
    • US10861748
    • 2004-06-04
    • Motoki KatoKoji ObataNobuhiro IgiYoshikazu Takashima
    • Motoki KatoKoji ObataNobuhiro IgiYoshikazu Takashima
    • H04N7/12G06K9/36
    • H04N21/44016G11B27/034G11B27/036G11B2220/20H04N5/85H04N9/8042H04N9/8063H04N19/115H04N19/124H04N19/152H04N19/172H04N19/177H04N19/196H04N19/197H04N19/40H04N19/61H04N21/23406H04N21/23424H04N21/23655H04N21/44004
    • An encoder to encode video streams representing a moving picture is provided whose video encoder calculates a bit storage quantity an STD video buffer should have when input of a stream ending with a first picture to the STD video buffer ends, calculates an initial bit storage quantity of a second picture of a stream concatenated to the end of the first picture and starting with the second picture, in a VBV buffer, based on the calculated bit storage quantity of the STD buffer, and encodes the stream based on the bit storage quantity. The video encoder further calculates a bit storage quantity of the STD video buffer, for decoding a picture of the stream in the STD video buffer, calculates, based on the calculated bit storage quantity, a bit storage quantity the VBV buffer should have for ending decoding of a fourth picture of a second stream concatenated to the beginning of a third picture and ending with the fourth picture, and encodes the stream based on the calculated bit storage quantity. With such encoding, a part of video streams can be re-coded without referencing to information indicative of an initial status of a video buffer when editing the video streams.
    • 提供一种用于对表示运动图像的视频流进行编码的编码器,其视频编码器计算STD视频缓冲器在以STD视频缓冲器结束的流的输入结束时应当具有的位存储量,计算出初始位存储量 基于所计算的STD缓冲器的比特存储量,在VBV缓冲器中连接到第一图像的结尾并以第二图像开始的流的第二图像,并且基于比特存储量对流进行编码。 视频编码器进一步计算STD视频缓冲器的比特存储量,用于对STD视频缓冲器中的流的图像进行解码,基于计算的比特存储量计算VBV缓冲器应该具有的用于结束解码的比特存储量 连接到第三图像的开始并以第四图像结束的第二流的第四图像,并且基于所计算的比特存储量对流进行编码。 通过这样的编码,当编辑视频流时,可以对视频流的一部分进行重新编码而不参考指示视频缓冲器的初始状态的信息。
    • 8. 发明授权
    • Decoding apparatus, decoding method, encoding apparatus, encoding method, image processing system, and image processing method
    • 解码装置,解码方法,编码装置,编码方法,图像处理系统和图像处理方法
    • US06795498B1
    • 2004-09-21
    • US09576594
    • 2000-05-22
    • Motoki KatoKoji ObataNobuhiro IgiHideyuki Narita
    • Motoki KatoKoji ObataNobuhiro IgiHideyuki Narita
    • H04B760
    • H04N19/40H04N19/61
    • An image processing system comprising a decoder 10 and an encoder 30. The decoder 10 comprises a section 12 for decoding a bit stream to generate image data, generating coding parameters for each layer and generating an error flag indicating whether the coding parameters can be effectively used. The encoder 30 comprises a control section 41, an MB-parameter calculating section 36, an encoding section 38 and a variable-length encoding section 39. The section 41 determines, from the error flag, whether or not the coding parameters can be effectively used or not. The section 36 calculates coding parameters when the coding parameters generated by the section 12 are invalid. The sections 38 and 39 encodes the image data by using the coding parameters generated by the section 12 when these parameters are valid, and by using the coding parameters calculated by the section 36 when the coding parameters generated by the section 12 are invalid.
    • 包括解码器10和编码器30的图像处理系统。解码器10包括用于对比特流进行解码以产生图像数据的部分12,为每个层生成编码参数并生成指示编码参数是否可以被有效地使用的错误标志 。 编码器30包括控制部分41,MB参数计算部分36,编码部分38和可变长度编码部分39.部分41根据误差标志确定是否可以有效地使用编码参数 或不。 当部分12产生的编码参数无效时,部分36计算编码参数。 部分38和39通过使用当这些参数有效时由部分12产生的编码参数,并且当由部分12产生的编码参数无效时,使用由部分36计算的编码参数来编码图像数据。
    • 9. 发明授权
    • Method for testing an inverter drive rotating electric machine
    • 变频器驱动旋转电机的测试方法
    • US09097768B2
    • 2015-08-04
    • US13618147
    • 2012-09-14
    • Koji ObataYutaka HigashimuraKeiji Suzuki
    • Koji ObataYutaka HigashimuraKeiji Suzuki
    • G01R31/34G01R31/12
    • G01R31/343G01R31/1227
    • With a rotating electric machine testing method for applying a test voltage to an armature winding of the rotating electric machine to thereby test insulation performance of the armature winding, in the case where a rated voltage of the armature winding of the rotating electric machine is E, and an insulation test voltage of an armature winding of a sine wave voltage drive rotating electric machine at the rated voltage E is E/√{square root over (3)} or E, a test voltage Vtest applied to an armature winding of the inverter drive rotating electric machine is set to Vtest=α·E/√{square root over (3)} or Vtest′=α·E, respectively, provided that α(=tinv/tsin), if the insulation thicknesses of the sine wave drive rotating electric machine is tsin and of the inverter drive rotating electric machine is tinv, thereby conducting a test on any of the AC voltage-current characteristic, AC tan δ, and AC partial-discharge characteristics.
    • 利用用于向旋转电机的电枢绕组施加测试电压从而测试电枢绕组的绝缘性能的旋转电机测试方法,在旋转电机的电枢绕组的额定电压为E的情况下, 并且在额定电压E下的正弦波电压驱动旋转电机的电枢绕组的绝缘测试电压为E /√{平方根超过(3)}或E,施加到逆变器的电枢绕组的测试电压V test 驱动旋转电机分别设置为V test =α·E /√{平方根超过(3)}或Vtest'=α·E,条件是α(= tinv / tsin),如果正弦波的绝缘厚度 驱动旋转电机是tsin,变频器驱动旋转电机是tinv,从而对任何交流电压 - 电流特性,ACtanδ和AC局部放电特性进行测试。