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    • 2. 发明授权
    • Apparatus and method for parallelizing legacy computer code
    • 用于并行化传统计算机代码的装置和方法
    • US06243863B1
    • 2001-06-05
    • US09366058
    • 1999-08-02
    • Suraj C. KothariMitra SimantaYoungtae Kim
    • Suraj C. KothariMitra SimantaYoungtae Kim
    • G06F945
    • G06F8/456
    • A computer-implemented method and apparatus for parallelizing input computer-program code based on class-specific abstractions. The method includes the steps of providing a class-specific abstraction (CSA), and generating parallelization code based on the CSA and the input code. Other aspects include checking the input code for compliance with the CSA, performing a dependency analysis of the input code for compliance with the CSA, analyzing the control flow of the input code based on the CSA, and generating a block-based representation of a control flow based on index variables in the input code and on the CSA. In one embodiment, the CSA includes a computational-set template, a dependency template, and a set of allowed index-variable access patterns. Yet other aspects include generating synchronization points based on the CSA, mapping a computational set to a virtual array of parallel processors, and mapping the virtual array of parallel processors to a physical array of parallel processors. Other features include outputting a representation of communications flow between processors of data related to index variables in the input code. Other aspects include a storage medium having a computer program stored thereon for causing a computer to parallelize input code by the method. Another embodiment includes the steps of identifying to the computer a numerical-method class used in the input code, identifying a mapping of an index variable used in the input code to spatial coordinates. Other aspects include performing dependency analysis to determine communication-synchronization points, and minimizing the number of such points for data transmitted between processors.
    • 一种用于基于特定于类的抽象并行化输入计算机程序代码的计算机实现的方法和装置。 该方法包括提供类特定抽象(CSA)和基于CSA和输入代码生成并行化代码的步骤。 其他方面包括检查符合CSA的输入代码,执行输入代码的依赖性分析以符合CSA,分析基于CSA的输入代码的控制流,以及生成基于块的控件表示 基于输入代码和CSA上的索引变量的流程。 在一个实施例中,CSA包括计算集模板,依赖模板和一组允许的索引变量访问模式。 还有其它方面包括基于CSA生成同步点,将计算集映射到并行处理器的虚拟阵列,以及将并行处理器的虚拟阵列映射到并行处理器的物理阵列。 其他特征包括输出与输入代码中的索引变量相关的数据的处理器之间的通信流的表示。 其他方面包括其上存储有用于使计算机通过该方法并行化输入代码的计算机程序的存储介质。 另一个实施例包括以下步骤:向输入代码中使用的数字方法类向计算机识别在输入代码中使用的索引变量与空间坐标的映射。 其他方面包括执行依赖关系分析以确定通信同步点,以及最小化处理器之间传输的数据的这些点数。
    • 4. 发明申请
    • NONCONTACT TYPE SUCTION GRIPPING DEVICE AND NONCONTACT TYPE SUCTION GRIPPING FRAME HAVING THE SAME
    • 非接合式吸附装置和非接合型吸附器具
    • US20100320786A1
    • 2010-12-23
    • US12732717
    • 2010-03-26
    • Youngchae KoHyukki KwonTaeho KeemChangha LeeYoungtae KimYoung Bae Chang
    • Youngchae KoHyukki KwonTaeho KeemChangha LeeYoungtae KimYoung Bae Chang
    • B25J15/06B66C1/02
    • B25J15/0616B65G49/061B65G2249/04B65G2249/045H01L21/6838
    • A noncontact type suction gripping device suitable for lifting a flat object in a noncontact manner includes a housing section including a pressing part which forms a closed surface when being placed to closely face one surface of a flat object, an R part which extends from the pressing part to be convexly rounded when viewed from the flat object, a sidewall part which is formed such that at least a portion thereof linearly extends from the R part in a direction facing away from the flat object, and an air inlet part which is connected to the sidewall part to introduce air, supplied from the outside, into the housing section; and a nozzle section including a nozzle tip which is separated from an inner surface of the sidewall part by a predetermined gap such that air supplied through the air inlet part can be discharged toward the perpendicular direction on the flat object, and an inclined surface which is formed to have a gradually decreasing diameter from the nozzle tip toward the air inlet part, the nozzle section having a funnel-shaped configuration and being inserted into a space defined in the housing section.
    • 适用于以非接触方式提升扁平物体的非接触型吸引夹持装置包括:壳体部分,包括当被放置成紧密地面对平坦物体的一个表面时形成闭合表面的按压部分;从压制件延伸的R部分 从扁平物体观察时要凸起成圆形的部分,形成为使得其至少一部分在远离平坦物体的方向上从R部分线性延伸的侧壁部分,以及连接到 所述侧壁部将从外部供给的空气引入所述壳体部; 以及喷嘴部,其包括以与所述侧壁部的内表面隔开预定间隙的喷嘴头,使得通过所述进气部供给的空气能够朝向所述平坦物体的垂直方向排出, 形成为从喷嘴尖端朝向空气入口部分的直径逐渐减小,所述喷嘴部分具有漏斗形构造并插入到限定在所述壳体部分中的空间中。
    • 5. 发明申请
    • Method, medium, and system encoding/decoding a multi-channel audio signal, and method medium, and system decoding a down-mixed signal to a 2-channel signal
    • 方法,媒体和系统编码/解码多声道音频信号和方法介质,并将下混合信号解码为2声道信号
    • US20080037809A1
    • 2008-02-14
    • US11702077
    • 2007-02-05
    • Youngtae Kim
    • Youngtae Kim
    • H04R5/02
    • H04S3/008G10L19/008H04S2400/01H04S2420/01H04S2420/03
    • A method, medium, and system encoding and/or decoding a multi-channel audio signal, and a method, medium, and system decoding a signal down-mixed from multi-channels to a 2-channel signal. The method of encoding an audio signal may include generating spatial cues indicating directivity information of a virtual sound source generated by at least two channel sound sources among a plurality of channels, and down-mixing the plurality of channel signals. The method of decoding an audio signal may include receiving inputs of spatial cues indicating directivity information of a virtual sound source generated by at least two channel sound sources among sound sources of a plurality of channels, and a signal down-mixed from the plurality of channel signals, and restoring the down-mixed signal to a plurality of channel signals by using the spatial cues. According to such systems, media, and methods, a multi-channel audio signal can be accurately encoded and/or decoded regardless of frequency bands.
    • 一种对多声道音频信号进行编码和/或解码的方法,媒体和系统,以及对从多声道信号进行下变频到2声道信号的信号进行解码的方法,媒体和系统。 编码音频信号的方法可以包括产生指示由多个频道中的至少两个声道声源产生的虚拟声源的方向性信息的空间提示,以及对多个声道信号进行下混频。 解码音频信号的方法可以包括:接收指示由多个声道的声源中的至少两个声道声源产生的虚拟声源的方向性信息的空间提示的输入,以及从多个声道下变频的信号 信号,并且通过使用空间提示将下混合信号恢复到多个信道信号。 根据这样的系统,无论频带如何,媒体和方法都可以精确地编码和/或解码多声道音频信号。
    • 7. 发明申请
    • MOBILE TERMINAL
    • 移动终端
    • US20130307473A1
    • 2013-11-21
    • US13889501
    • 2013-05-08
    • Kiwon HANKabsung ChongYoungtae KimJoonbum LeeMizi Yi
    • Kiwon HANKabsung ChongYoungtae KimJoonbum LeeMizi Yi
    • H02J7/02
    • H02J50/12H02J7/025H02J7/04H02J50/40
    • Disclosed is a mobile terminal capable of wirelessly charging a battery using a magnetic induction method. The mobile terminal may include a battery configured to support normal charging mode and fast charging mode, a power pick-up unit configured to pick up power transmitted by a wireless charging device based on magnetic induction, generate a charging voltage based on the pick-up power, and supply the charging voltage to the battery, and a control unit configured to increase the pick-up power by controlling an impedance of the power pick-up unit and increase a charging speed of the battery based on the increased pick-up power in the fast charging mode. The mobile terminal can increase the charging speed of the battery in such a way as to increase pick-up power from power transmitted by the wireless charging device by varying the impedance of the power pick-up unit in fast charging mode.
    • 公开了能够使用磁感应方式对电池进行无线充电的移动终端。 移动终端可以包括被配置为支持正常充电模式和快速充电模式的电池,被配置为基于磁感应来拾取由无线充电装置发送的电力的电力拾取单元,基于拾取器产生充电电压 电源并向电池提供充电电压;以及控制单元,其被配置为通过控制电力拾取单元的阻抗来增加拾取功率,并且基于增加的拾取功率来增加电池的充电速度 在快速充电模式。 移动终端可以增加电池的充电速度,以便通过在快速充电模式下改变功率拾取单元的阻抗来增加由无线充电装置发送的功率的拾取功率。
    • 8. 发明授权
    • Method, medium, and system encoding/decoding a multi-channel audio signal, and method medium, and system decoding a down-mixed signal to a 2-channel signal
    • 方法,媒体和系统编码/解码多声道音频信号和方法介质,并将下混合信号解码为2声道信号
    • US08867751B2
    • 2014-10-21
    • US11702077
    • 2007-02-05
    • Youngtae Kim
    • Youngtae Kim
    • H04R5/00H04R5/02G10L19/008H04S3/00
    • H04S3/008G10L19/008H04S2400/01H04S2420/01H04S2420/03
    • A method, medium, and system encoding and/or decoding a multi-channel audio signal, and a method, medium, and system decoding a signal down-mixed from multi-channels to a 2-channel signal. The method of encoding an audio signal may include generating spatial cues indicating directivity information of a virtual sound source generated by at least two channel sound sources among a plurality of channels, and down-mixing the plurality of channel signals. The method of decoding an audio signal may include receiving inputs of spatial cues indicating directivity information of a virtual sound source generated by at least two channel sound sources among sound sources of a plurality of channels, and a signal down-mixed from the plurality of channel signals, and restoring the down-mixed signal to a plurality of channel signals by using the spatial cues. According to such systems, media, and methods, a multi-channel audio signal can be accurately encoded and/or decoded regardless of frequency bands.
    • 一种对多声道音频信号进行编码和/或解码的方法,媒体和系统,以及对从多声道信号进行下变频到2声道信号的信号进行解码的方法,媒体和系统。 编码音频信号的方法可以包括产生指示由多个频道中的至少两个声道声源产生的虚拟声源的方向性信息的空间提示,以及对多个声道信号进行下混频。 解码音频信号的方法可以包括接收指示由多个声道的声源中的至少两个声道声源产生的虚拟声源的方向性信息的空间提示的输入,以及从多个通道 信号,并且通过使用空间提示将下混合信号恢复到多个信道信号。 根据这样的系统,无论频带如何,媒体和方法都可以精确地编码和/或解码多声道音频信号。
    • 9. 发明申请
    • MOBILE TERMINAL AND WIRELESS CHARGING MODULE THEREFOR
    • 移动终端和无线充电模块
    • US20130221910A1
    • 2013-08-29
    • US13599068
    • 2012-08-30
    • Youngtae KIMKiwon HanKabsung ChongMizi Yi
    • Youngtae KIMKiwon HanKabsung ChongMizi Yi
    • H02J7/00
    • H02J50/10H02J5/005H02J7/025H02J50/70H02J50/90H04B5/0037H04B5/0081
    • The present invention provides a mobile terminal which, when wireless (contactless) charging of a battery is performed by approximating a transmission coil of a charging unit (charging pad) and a reception coil provided in a wireless charging module of a mobile terminal, can adjust the saturation magnetic flux density and eddy currents of a shield sheet to which the reception coil is attached, the shield sheet being provided in the wireless charging module. When the reception coil is placed on the shield sheet to perform wireless charging, the saturation magnetic flux density and eddy current generation in the shield sheet are adjusted for wireless charging purpose because a part of the region in which the magnetic flux density is most quickly saturated was clipped off from the shield sheet. Thus, charging efficiency can be increased, and the problem of heat generation of the shield sheet can be effectively.
    • 本发明提供了一种移动终端,当通过近似充电单元(充电垫)的发送线圈和设置在移动终端的无线充电模块中的接收线圈来执行电池的无线(非接触)充电时,可以调整 安装有接收线圈的屏蔽片的饱和磁通密度和涡流,屏蔽片设置在无线充电模块中。 当接收线圈被放置在屏蔽片上以执行无线充电时,为了无线充电目的而调节屏蔽片中的饱和磁通密度和涡流产生,因为磁通密度最快饱和的区域的一部分 从屏蔽板上剪掉。 因此,能够提高充电效率,能够有效地发挥屏蔽片的发热问题。