METHODS AND APPARATUS FOR REDUCING CALL SETUP DELAY FOR A WIRELESS DEVICE
    2.
    发明申请
    METHODS AND APPARATUS FOR REDUCING CALL SETUP DELAY FOR A WIRELESS DEVICE 审中-公开
    用于减少无线设备的呼叫建立延迟的方法和装置

    公开(公告)号:US20160278105A1

    公开(公告)日:2016-09-22

    申请号:US14664110

    申请日:2015-03-20

    CPC classification number: H04W76/27 H04W60/005 H04W68/12 H04W76/16

    Abstract: Disclosed are methods and apparatus for reducing a call setup time in wireless communication systems, particularly for systems employing SVLTE where an LTE network is used for data and a 1×CDMA network for voice. The methods and apparatus feature the capability during mobile terminated (MT) calls to modify a normal mode of operation of a predefined operation in a mobile terminal (e.g., call switched fallback (CSFB)), wherein processes normally performed for between a first network (e.g., LTE) are not performed in the mobile terminal, allowing a page response message to be sent directly, and thus sooner, to the other network (e.g., 1×CDMA) in response to an MT call page. This hybrid operation allowing the skipping of normal processes reduces the time for call set up.

    Abstract translation: 公开了用于减少无线通信系统中的呼叫建立时间的方法和装置,特别是对于使用LTE网络用于数据的SVLTE的系统和用于语音的1×CDMA网络的方法和装置。 所述方法和装置具有在移动终止(MT)呼叫期间修改移动终端中预定义操作的正常操作模式(例如,呼叫切换回退(CSFB))的能力,其中通常在第一网络 例如LTE)不能在移动终端中执行,从而允许响应于MT呼叫页面将页面响应消息直接发送到另一个网络(例如,1×CDMA)。 这种允许跳过正常进程的混合操作减少了呼叫建立的时间。

    Adaptive ROHC state transition
    4.
    发明授权
    Adaptive ROHC state transition 有权
    自适应ROHC状态转换

    公开(公告)号:US09538421B1

    公开(公告)日:2017-01-03

    申请号:US14750999

    申请日:2015-06-25

    CPC classification number: H04W28/06 H04L1/1607 H04L69/04 H04L69/22

    Abstract: A method, an apparatus, and a computer-readable medium for wireless communication are provided. The apparatus may be a first device. The first device operates a ROHC compressor in a first state at a ROHC sublayer to compress a first packet to be transmitted to a second device. The first packet includes information for a ROHC decompressor to establish a ROHC context. The information enables the ROHC decompressor to decompress a second packet compressed by the ROHC compressor when operating in a second state. The first device determines, at a sublayer or a layer lower than the ROHC sublayer, whether the first packet has been successfully received at the second device. The first device continues operating the ROHC compressor in the first state in response to a determination that the first packet has not been successfully received at the second device.

    Abstract translation: 提供了一种用于无线通信的方法,装置和计算机可读介质。 该装置可以是第一装置。 第一设备在ROHC子层处操作处于第一状态的ROHC压缩器来压缩要发送到第二设备的第一分组。 第一分组包括用于建立ROHC上下文的ROHC解压缩器的信息。 该信息使得当在第二状态下操作时,ROHC解压缩器解压缩由ROHC压缩器压缩的第二分组。 第一设备在子层或低于ROHC子层的层中确定第一分组是否已经在第二设备被成功接收。 响应于确定第一分组尚未在第二设备处被成功接收,第一设备继续在第一状态中操作ROHC压缩器。

    Method and apparatus for fast TCH to idle transition
    6.
    发明授权
    Method and apparatus for fast TCH to idle transition 有权
    快速TCH到空闲转换的方法和装置

    公开(公告)号:US09485727B2

    公开(公告)日:2016-11-01

    申请号:US13856854

    申请日:2013-04-04

    Abstract: Techniques for determining if it is safe for a mobile device to transition directly from a traffic session to a paging mode and for avoiding network re-synchronization procedures in stationary M2M devices are disclosed. It may be safe for direct transition if before-call and in-call network parameters correspond. If safe, the mobile device may transition from the traffic session directly to the paging mode to begin immediately monitoring the paging channel. In stationary M2M devices, paging information is stored before the traffic session and, once the traffic session is complete, the M2M device may be configured to receive paging messaging based on the stored paging information. The M2M device may also store system access information and confirm the validity of the information before returning to the sleep state. The stationary M2M device avoids network re-synchronization procedures. Other aspects, embodiments, and features are also claimed and described.

    Abstract translation: 公开了用于确定移动设备直接从业务会话转换到寻呼模式是否安全以及用于避免固定M2M设备中的网络重新同步过程的技术。 如果通话和通话网络参数对应,直接转接可能是安全的。 如果安全,则移动设备可以从业务会话直接转换到寻呼模式,以开始立即监视寻呼信道。 在固定M2M设备中,在业务会话之前存储寻呼信息,一旦业务会话完成,M2M设备可以被配置为基于存储的寻呼信息来接收寻呼消息。 M2M设备还可以存储系统访问信息,并在返回睡眠状态之前确认信息的有效性。 固定式M2M设备避免了网络重新同步过程。 还要求和描述其它方面,实施例和特征。

    METHOD AND APPARATUS FOR FAST TCH TO IDLE TRANSITION
    7.
    发明申请
    METHOD AND APPARATUS FOR FAST TCH TO IDLE TRANSITION 有权
    快速TCH到空闲过渡的方法和装置

    公开(公告)号:US20140269472A1

    公开(公告)日:2014-09-18

    申请号:US13856854

    申请日:2013-04-04

    Abstract: Techniques for determining if it is safe for a mobile device to transition directly from a traffic session to a paging mode and for avoiding network re-synchronization procedures in stationary M2M devices are disclosed. It may be safe for direct transition if before-call and in-call network parameters correspond. If safe, the mobile device may transition from the traffic session directly to the paging mode to begin immediately monitoring the paging channel. In stationary M2M devices, paging information is stored before the traffic session and, once the traffic session is complete, the M2M device may be configured to receive paging messaging based on the stored paging information. The M2M device may also store system access information and confirm the validity of the information before returning to the sleep state. The stationary M2M device avoids network re-synchronization procedures. Other aspects, embodiments, and features are also claimed and described.

    Abstract translation: 公开了用于确定移动设备直接从业务会话转换到寻呼模式是否安全以及用于避免固定M2M设备中的网络重新同步过程的技术。 如果通话和通话网络参数对应,直接转接可能是安全的。 如果安全,则移动设备可以从业务会话直接转换到寻呼模式,以开始立即监视寻呼信道。 在固定M2M设备中,在业务会话之前存储寻呼信息,一旦业务会话完成,M2M设备可以被配置为基于存储的寻呼信息来接收寻呼消息。 M2M设备还可以存储系统访问信息,并在返回睡眠状态之前确认信息的有效性。 固定式M2M设备避免了网络重新同步过程。 还要求和描述其它方面,实施例和特征。

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