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    • 1. 发明申请
    • Hydraulic control system of automatic transmission for vehicle
    • 车辆自动变速器液压控制系统
    • US20060105882A1
    • 2006-05-18
    • US11264853
    • 2005-11-02
    • Jong ParkHyeog LeeJin ParkByung Shin
    • Jong ParkHyeog LeeJin ParkByung Shin
    • F16H47/08F16H61/26
    • F16H61/061F16H61/0206F16H2061/0253Y10T477/6936Y10T477/6937
    • A hydraulic control system of an automatic transmission that precisely control is operating hydraulic pressure supplied to a frictional element during shifting and can eliminate oil leak under a maximum operating hydraulic pressure. The hydraulic control system controls a hydraulic pressure generated by a hydraulic pump to from an operating hydraulic pressure for a frictional element selectively operating at each shift ratio. A hydraulic line is configured such that the operating hydraulic pressure of the frictional element is controlled by a pressure control valve and a switching valve that are controlled by a solenoid valve. An exhaust hydraulic line of the pressure control valve is connected to an exhaust hydraulic line of the switching valve such that the exhaust hydraulic line of the pressure control valve can be controlled by a switching of the switching valve.
    • 精密控制的自动变速器的液压控制系统在变速期间提供给摩擦元件的液压操作,并且可以在最大工作液压下消除油泄漏。 液压控制系统控制由液压泵产生的液压,以从用于在每个换档比选择性地运行的摩擦元件的操作液压。 液压管路构造成使得摩擦元件的操作液压由通过电磁阀控制的压力控制阀和切换阀来控制。 压力控制阀的排气液压管线连接到切换阀的排气液压管线,使得可以通过切换阀的切换来控制压力控制阀的排气液压管路。
    • 6. 发明申请
    • Color reproduction method and system, and video display method and device using the same
    • 彩色再现方法和系统,以及视频显示方法和使用该设备的设备
    • US20070171309A1
    • 2007-07-26
    • US11723890
    • 2007-03-22
    • Hee KimKyu SohngEun KimDae KimDong RyuJong ParkJohn Shin
    • Hee KimKyu SohngEun KimDae KimDong RyuJong ParkJohn Shin
    • H04N9/69
    • H04N9/67H04N9/69
    • A color reproduction correcting system and method, and a video display device and method can reproduce original color by considering signal source and display device. Each signal source information and each display device information can be stored. The signal source and the display device, which are currently used (e.g., corrected), can be determined, for example, by a user selection. In one embodiment, the signal provided from a transmission side can be inverse gamma-corrected based on a corresponding signal source, and a colorimetric error of the inverse gamma-corrected signal is preferably corrected using corresponding signal source information and display device information. The corrected colorimetric error signal can be gamma-corrected based on a corresponding display device and then can be displayed on the corresponding display device.
    • 色彩再现校正系统和方法以及视频显示装置和方法可以通过考虑信号源和显示装置来再现原始颜色。 可以存储每个信号源信息和每个显示设备信息。 当前使用(例如,校正)的信号源和显示装置可以例如通过用户选择来确定。 在一个实施例中,从发送侧提供的信号可以基于对应的信号源进行反伽马校正,并且优选地使用相应的信号源信息和显示设备信息来校正反伽马校正信号的比色误差。 校正的比色误差信号可以基于相应的显示装置进行伽马校正,然后可以显示在相应的显示装置上。
    • 7. 发明申请
    • Method and system of verifying protein-protein interaction using protein homology relationship
    • 使用蛋白质同源关系验证蛋白质 - 蛋白质相互作用的方法和系统
    • US20070136003A1
    • 2007-06-14
    • US11635581
    • 2006-12-08
    • Jae ChoiJong ParkSeon Park
    • Jae ChoiJong ParkSeon Park
    • G06F19/00
    • G16B20/00G16B30/00
    • Provided are a method and system for verifying a protein-protein interaction of a species by using a homology relationship between proteins of the species and proteins of other species. The method includes generating one or more protein homology relationships between source proteins of a species and heterogeneous proteins of one or more other species, generating one or more heterogeneous protein interactions corresponding to a specific source protein interaction using the generated one or more protein homology relationships, and determining whether the generated one or more heterogeneous protein interactions are present between the heterogeneous proteins of one or more species. Accordingly, a protein-protein interaction of a specific high-rank organism can be automatically verified by using protein-protein interactions of a low-rank organism that can be easily determined at low costs, without an expensive biological experiment.
    • 提供了一种通过使用物种的蛋白质和其他物种的蛋白质之间的同源性关系来验证物种的蛋白质 - 蛋白质相互作用的方法和系统。 该方法包括在物种的源蛋白质和一种或多种其他物种的异质蛋白质之间产生一种或多种蛋白质同源性关系,使用所产生的一种或多种蛋白质同源性关系产生对应于特定来源蛋白质相互作用的一种或多种异质蛋白质相互作用, 以及确定所产生的一种或多种异质蛋白质相互作用是否存在于一种或多种物质的异质蛋白质之间。 因此,通过使用可以以低成本容易地测定的低等级生物体的蛋白质 - 蛋白质相互作用,可以自动验证特定高级生物体的蛋白质 - 蛋白质相互作用,而无需昂贵的生物实验。
    • 8. 发明申请
    • Method and system for synchronizing protein information of PPI network DB
    • PPI网络数据库的蛋白质信息同步方法和系统
    • US20070136002A1
    • 2007-06-14
    • US11635579
    • 2006-12-08
    • Jae ChoiJong ParkMyung LimSeon Park
    • Jae ChoiJong ParkMyung LimSeon Park
    • G06F19/00
    • G16B50/00G16B20/00
    • A method and system for keeping a protein-protein interaction (PPI) network database (DB) up-to-date by synchronizing protein information present in the PPI network DB with protein information present in a public DB which is frequently updated and is provided to the public are provided. The method of synchronizing protein information of a protein-protein interaction (PPI) network database (DB) includes: (a) choosing a protein from a PPI network DB which stores a plurality of pieces of PPI information; (b) receiving up-to-date protein information corresponding to the chosen protein from a global protein DB which stores a plurality of pieces of up-to-date protein information that can be provided to the public, and keeping the local protein DB up-to-date by performing a global synchronization operation on a local protein DB such that protein information which corresponds to the chosen protein and is present in the local protein DB can be updated with the received up-to-date protein information, the local protein DB storing a plurality of pieces of protein information corresponding to the PPI network DB; and (c) receiving updated protein information obtained through the global synchronization operation from the local protein DB, and keeping the PPI network up-to-date by performing a local synchronization operation on the PPI network DB such that protein information which corresponds to the chosen protein and is present in the PPI network DB can be updated with the received updated protein information.
    • 通过将PPI网络DB中存在的蛋白质信息与存在于公共DB中的蛋白质信息同步来保持蛋白质 - 蛋白质相互作用(PPI)网络数据库(DB)的最新方法和系统,所述蛋白质信息经常被更新并提供给 公众提供。 蛋白质 - 蛋白质相互作用(PPI)网络数据库(DB)的同步蛋白质信息的方法包括:(a)从存储多条PPI信息的PPI网络DB中选择蛋白质; (b)从全球蛋白质DB接收对应于所选择的蛋白质的最新蛋白质信息,其存储可以提供给公众的多条最新蛋白质信息,并保持局部蛋白质DB向上 通过对局部蛋白质DB进行全局同步操作,使得可以用接收到的最新蛋白质信息来更新对应于所选蛋白质并存在于局部蛋白质DB中的蛋白质信息,局部蛋白质 DB存储对应于PPI网络DB的多条蛋白质信息; 和(c)从本地蛋白质DB接收通过全局同步操作获得的更新的蛋白质信息,并且通过对PPI网络DB执行本地同步操作来保持PPI网络是最新的,使得与所选择的蛋白质信息相对应的蛋白质信息 蛋白质并存在于PPI网络DB中,可以用接收到的更新的蛋白质信息进行更新。
    • 9. 发明申请
    • System and method for managing postal devices using radio frequency identification
    • 使用射频识别管理邮政设备的系统和方法
    • US20070132589A1
    • 2007-06-14
    • US11635201
    • 2006-12-07
    • Sung KimSung ChoiJong Park
    • Sung KimSung ChoiJong Park
    • G06F17/00
    • G07B17/00508G07B17/00024G07B2017/00048G07B2017/00629
    • A system and method for processing postal work using Radio Frequency Identification (RFID) apparatus. With RFID applied to the postal work, the system includes a structure for managing postal devices used in postal registration center and postal delivery center such as embedded controllers for controlling monitors, audio alarms, alarm lamps and PDAs. The system also includes middleware for managing RFID readers and message repeater adopting Java Messaging Service (JMS) . This allows exchanging data received from the RFID reader by JMS transfer method, ensuring stable asynchronous exchange of information and effective monitoring of data transferred in an entire process of postal work. This also decreases the load of the middleware in a work environment where a large amount of data is received in a short period of time such as postal work process.
    • 一种使用射频识别(RFID)设备处理邮政工作的系统和方法。 随着RFID应用于邮政工作,该系统包括用于管理在邮政注册中心和邮政递送中心使用的邮政设备的结构,例如用于控制监视器,音频警报,报警灯和PDA的嵌入式控制器。 该系统还包括管理RFID阅读器的中间件和采用Java消息服务(JMS)的消息中继器。 这样可以通过JMS传输方式交换从RFID阅读器接收到的数据,确保信息的稳定的异步交换和对整个邮政工作过程中传输的数据的有效监控。 这也减少了在诸如邮政工作过程的短时间内接收到大量数据的工作环境中的中间件的负载。