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    • 2. 发明授权
    • Moving picture encoding apparatus and distribution system
    • 运动图像编码装置及配送系统
    • US08442114B2
    • 2013-05-14
    • US12923421
    • 2010-09-21
    • Takahiro Yamasaki
    • Takahiro Yamasaki
    • H04N7/12
    • H04N19/115H04N19/395
    • A moving picture encoding apparatus divides a moving picture signal into key frames and non-key frames, encodes the key frames, predicts the non-key frames from the encoded key frames, determines a final encoding rate for each non-key frame, encodes each non-key frame, and outputs an error-correcting code at the final encoding rate as encoded data of the non-key frame. To determine the final encoding rate, the number of error-correcting bits needed to correct prediction errors is estimated by a first method and one or more second methods. The second methods are used to decide whether to use the number of bits estimated by the first method as the final encoding rate, or whether to supplement the estimated number of bits by adding an encoding rate correction. As a result, the encoding rate is not supplemented unnecessarily and the encoding efficiency is improved.
    • 运动图像编码装置将运动图像信号划分成关键帧和非关键帧,对关键帧进行编码,从编码关键帧预测非关键帧,确定每个非关键帧的最终编码率,对每个非关键帧进行编码 非关键帧,并且以最终编码速率输出作为非关键帧的编码数据的纠错码。 为了确定最终编码速率,通过第一种方法和一种或多种第二种方法估计校正预测误差所需的纠错位数。 第二种方法用于决定是否使用由第一种方法估计的比特数作为最终编码率,或者是否通过添加编码率校正来补充估计的比特数。 结果,不需要补充编码率,提高编码效率。
    • 3. 发明授权
    • Moving picture encoder, decoder, and coding system
    • 运动图像编码器,解码器和编码系统
    • US08374255B2
    • 2013-02-12
    • US12654335
    • 2009-12-17
    • Takahiro Yamasaki
    • Takahiro Yamasaki
    • H04N7/18
    • H04N19/395H04N19/172H04N19/184H04N19/46
    • A moving picture sequence is divided into key frames, which are coded by a conventional method, and non-key frames, which are coded to obtain error-correcting information. The encoder and decoder independently generate predicted images for each non-key frame. The encoder compares its predicted image with the original non-key frame to estimate how much error-correcting information the decoder will need to decode the non-key frame by correcting prediction errors in the decoder's predicted image, and sends the decoder that amount of error-correcting information together with correlation information indicating how closely the predicted image and the original non-key frame are correlated. Before decoding the non-key frame, the decoder modifies the correlation information to compensate for differences in the prediction methods employed by the encoder and decoder. The modification enables the decoding process to converge faster.
    • 运动图像序列被划分为通过常规方法编码的关键帧和被编码以获得纠错信息的非关键帧。 编码器和解码器独立地生成每个非关键帧的预测图像。 编码器将其预测图像与原始非关键帧进行比较,以通过校正解码器预测图像中的预测误差来估计解码器将需要解码非关键帧的纠错信息,并将解码器的误差量 - 校正信息以及指示预测图像和原始非关键帧相关联的相关信息。 在解码非关键帧之前,解码器修改相关信息以补偿编码器和解码器采用的预测方法的差异。 该修改使解码过程能够更快地收敛。
    • 5. 发明申请
    • Multi-Blade Centrifugal Fan
    • 多叶片离心风机
    • US20090129919A1
    • 2009-05-21
    • US12083002
    • 2006-11-24
    • Takahiro YamasakiAkira KomatsuTooru Iwata
    • Takahiro YamasakiAkira KomatsuTooru Iwata
    • F04D29/42
    • F04D29/282F04D29/162F04D29/424
    • A multi-blade centrifugal fan for preventing circular flows in the end portions of an impeller in the axial direction is provided in a simple structure. The multi-blade centrifugal fan is formed of a fan casing 1 of a scroll type and a multi-blade centrifugal impeller 2. The fan casing 1 has a bellmouth 4 which becomes an air intake. The multi-blade centrifugal impeller 2 has a number of annularly arranged blades 6 inside the fan casing 1. The centrifugal impeller 2 draws in air through the intake 7, which faces the bellmouth 4, and blows out the air in the centrifugal direction through the blades 6. A retainer ring 10 is provided in an outer peripheral end portion of the impeller 2. A cylindrical body 11 is integrally provided in such a manner as to extend from the outer end of the retainer ring 10, so that circular flows toward the intake side are prevented in the end portions of the impeller 2.
    • 以简单的结构提供用于防止叶轮在轴向端部的圆形流动的多叶片离心式风扇。 多叶片离心风扇由涡旋式风扇壳体1和多叶片离心式叶轮2形成。风扇壳体1具有形成进气口的喇叭口4。 多叶片离心式叶轮2在风扇壳体1内部具有多个环状排列的叶片6.离心式叶轮2通过面向喇叭口4的进气口7吸入空气,并通过离心式叶轮2离心吹出空气。 在叶轮2的外周端部设置有保持环10.圆筒体11一体地设置成从保持环10的外端延伸,使得圆形体朝向 吸入侧在叶轮2的端部被阻止。
    • 8. 发明授权
    • Multi-blade centrifugal fan
    • 多叶片离心风机
    • US08419360B2
    • 2013-04-16
    • US12083002
    • 2006-11-24
    • Takahiro YamasakiAkira KomatsuTooru Iwata
    • Takahiro YamasakiAkira KomatsuTooru Iwata
    • F04D29/28
    • F04D29/282F04D29/162F04D29/424
    • A multi-blade centrifugal fan for preventing circular flows in the end portions of an impeller in the axial direction is provided in a simple structure. The multi-blade centrifugal fan is formed of a fan casing of a scroll type and a multi-blade centrifugal impeller. The fan casing has a bellmouth which becomes an air intake. The multi-blade centrifugal impeller has a number of annularly arranged blades inside the fan casing. The centrifugal impeller draws in air through the intake, which faces the bellmouth, and blows out the air in the centrifugal direction through the blades. A retainer ring is provided in an outer peripheral end portion of the impeller. A cylindrical body is integrally provided in such a manner as to extend from the outer end of the retainer ring, so that circular flows toward the intake side are prevented in the end portions of the impeller.
    • 以简单的结构提供用于防止叶轮在轴向端部的圆形流动的多叶片离心式风扇。 多叶片离心风扇由涡旋式风扇壳体和多叶片式离心式叶轮构成。 风扇外壳有一个喇叭口,成为一个进气口。 多叶片离心式叶轮在风扇壳体内部具有多个环形布置的叶片。 离心式叶轮通过面向喇叭口的入口吸入空气,并通过叶片沿离心方向吹出空气。 在叶轮的外周端部设置有保持环。 圆筒体一体地设置成从保持环的外端延伸,从而在叶轮的端部处防止了向吸入侧流动的圆形。
    • 9. 发明申请
    • Moving picture encoder, decoder, and coding system
    • 运动图像编码器,解码器和编码系统
    • US20100208801A1
    • 2010-08-19
    • US12654335
    • 2009-12-17
    • Takahiro Yamasaki
    • Takahiro Yamasaki
    • H04N7/68H04N7/26H04N7/32
    • H04N19/395H04N19/172H04N19/184H04N19/46
    • A moving picture sequence is divided into key frames, which are coded by a conventional method, and non-key frames, which are coded to obtain error-correcting information. The encoder and decoder independently generate predicted images for each non-key frame. The encoder compares its predicted image with the original non-key frame to estimate how much error-correcting information the decoder will need to decode the non-key frame by correcting prediction errors in the decoder's predicted image, and sends the decoder that amount of error-correcting information together with correlation information indicating how closely the predicted image and the original non-key frame are correlated. Before decoding the non-key frame, the decoder modifies the correlation information to compensate for differences in the prediction methods employed by the encoder and decoder. The modification enables the decoding process to converge faster.
    • 运动图像序列被划分为通过常规方法编码的关键帧和被编码以获得纠错信息的非关键帧。 编码器和解码器独立地生成每个非关键帧的预测图像。 编码器将其预测图像与原始非关键帧进行比较,以通过校正解码器预测图像中的预测误差来估计解码器将需要解码非关键帧的纠错信息,并将解码器的误差量 - 校正信息以及指示预测图像和原始非关键帧相关联的相关信息。 在解码非关键帧之前,解码器修改相关信息以补偿编码器和解码器采用的预测方法的差异。 该修改使解码过程能够更快地收敛。