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    • 12. 发明申请
    • Method and apparatus by which a UE starts compression in SIP signalling to IMS
    • UE在IMS信令中开始压缩的方法和装置
    • US20050086327A1
    • 2005-04-21
    • US10687533
    • 2003-10-16
    • Georg MayerHisham KhartabilRobert SugarPaulius Meskauskas
    • Georg MayerHisham KhartabilRobert SugarPaulius Meskauskas
    • G06F20060101G06F15/16
    • H04L65/1006H04L65/1016H04L65/105H04L65/1069H04L69/04
    • A method (and corresponding equipment) by which a UE device (10) begins compressing messages it transmits to an SIP outbound proxy server (12) as SIP signals, including: a step (22a) in which the UE device sends a request message (22a 32a 42a) to the SIP outbound proxy server (12); and a step (23 33 43) in which the UE device analyzes a response message (22b 32b 42b) received from the SIP outbound proxy server (12) in response to the request message (22a 32a 42a) to determine a compression parameter. The request message (22a) may be an options request message and the response message (22b) would then be e.g. a 200 OK message. Alternatively, the request message (32a) may be a register message, and the response message (32b) would then be e.g. a 401 (unauthorized) message. In another embodiment, the response message (42b) is any compressed message.
    • 一种UE设备(10)开始将其作为SIP信号发送到SIP出站代理服务器(12)的消息压缩的方法(和相应的设备),包括:步骤(22a),UE设备发送请求消息 (22 a 32 a 42 a)到SIP出站代理服务器(12); 以及步骤(233343),其中所述UE设备响应于所述请求消息(22 a 32 a 42 a)到所述SIP出站代理服务器(12)接收到的响应消息(22b 32 b 42 b) 确定压缩参数。 请求消息(22a)可以是选项请求消息,并且响应消息(22b)将是例如。 200 OK消息。 或者,请求消息(32a)可以是注册消息,并且响应消息(32b)将是例如, 401(未经授权)讯息。 在另一个实施例中,响应消息(42b)是任何压缩消息。
    • 13. 发明授权
    • Method and apparatus for optical detection of cleaning medium in an
information storage drive
    • 用于信息存储驱动器中的清洁介质的光学检测的方法和装置
    • US5369285A
    • 1994-11-29
    • US164762
    • 1993-12-10
    • Steven P. GeorgisRobert SugarRodney BrittnerThomas D. Fox
    • Steven P. GeorgisRobert SugarRodney BrittnerThomas D. Fox
    • G11B5/41G11B15/08G11B19/12G01N21/86G01V9/04
    • G11B19/12G11B15/08G11B5/41
    • A system (20) and method for identification of medium (41) inserted into an information storage drive optically determines whether the medium is cleaning medium by determining the translucency of the medium. The system includes a dual infra-red LED light source (28) having a controllable intensity as well as BOT and EOT light receivers (30, 32). The medium longitudinally extends between the light source and the light receivers. A medium identification controller (48) determines the type of medium inserted into the information storage drive by progressively ramping the intensity of the light source and determining at what effective driving signal value the light receivers actually receive light through the medium, and by comparing the effective driving signal value for each receiver with a calibrated driving signal value at which the light receiver actually receives light when no medium is inserted.
    • 用于识别插入到信息存储驱动器中的介质(41)的系统(20)和方法通过确定介质的半透明来光学地确定介质是否是清洁介质。 该系统包括具有可控制强度的双重红外LED光源(28)以及BOT和EOT光接收器(30,32)。 介质纵向延伸在光源和光接收器之间。 介质识别控制器(48)通过逐渐地增加光源的强度来确定插入到信息存储驱动器中的介质的类型,并确定光接收器实际上通过介质接收光的有效驱动信号值,并且通过比较有效的 具有校准的驱动信号值的每个接收机的驾驶信号值,在没有介质插入的情况下,光接收器实际接收光。