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    • 1. 发明申请
    • Power-efficient address mapping scheme
    • 功率高效的地址映射方案
    • US20070140159A1
    • 2007-06-21
    • US11508818
    • 2006-08-24
    • Pasi EronenLauri TarkkalaHenry Haverinen
    • Pasi EronenLauri TarkkalaHenry Haverinen
    • H04J3/16H04Q7/00
    • H04L12/12H04L29/12009H04L29/12471H04L61/2553H04L69/16H04L69/165H04L69/28Y02D30/30Y02D50/40
    • The present invention relates to a method, system, client device, gateway device and computer program product for maintaining a state information in an intermediate network function, wherein the state information expires after a predetermined idle period. Detecting means are provided for detecting an idle state of a connection. In response to the detecting means, a transport protocol used for encapsulating data is changed from a first protocol with a first predetermined idle period to a second protocol with a second predetermined idle period, said second predetermined idle period being longer than said first predetermined idle period. Alternatively, a connection parameter is provided to a device for a parallel second connection in a set-up negotiation via said first connection. This connection parameter is then used for setting up a parallel second connection to the device based on the second transport protocol used for encapsulating data with the second predetermined idle period. Then, an information linking the first and second connections is transmitted from the device to the data network, wherein the second connection is used for transmitting a wake-up notification to the device in response a detected idle state. Both alternatives provide the advantage of reduced keep-alive signaling and thus enhanced battery efficiency.
    • 本发明涉及一种在中间网络功能中维持状态信息的方法,系统,客户端设备,网关设备和计算机程序产品,其中状态信息在预定的空闲时段之后到期。 提供用于检测连接的空闲状态的检测装置。 响应于检测装置,用于封装数据的传输协议从具有第一预定空闲周期的第一协议改变为具有第二预定空闲周期的第二协议,所述第二预定空闲周期长于所述第一预定空闲周期 。 或者,在经由所述第一连接的建立协商中,将连接参数提供给用于并行第二连接的设备。 然后,该连接参数用于基于用于封装具有第二预定空闲周期的数据的第二传输协议来设置到设备的并行第二连接。 然后,将连接第一和第二连接的信息从设备发送到数据网络,其中第二连接用于响应于检测到的空闲状态向设备发送唤醒通知。 两种替代方案都提供减少保活信号的优点,从而提高电池效率。
    • 7. 发明申请
    • Replay prevention mechanism for EAP/SIM authentication
    • EAP / SIM认证重放防范机制
    • US20050149734A1
    • 2005-07-07
    • US10751300
    • 2004-01-02
    • Pasi EronenHenry HaverinenKaisa Nyberg
    • Pasi EronenHenry HaverinenKaisa Nyberg
    • H04L9/00H04L9/08H04L9/32
    • H04L9/002H04L9/3236H04L9/3271H04L2209/80H04W12/06
    • A method for use by a telecommunication terminal (10) in checking whether a candidate RAND in an EAP/SIM RAND challenge is likely a replay, based on using a Bloom filter including a vector data structure (21) for determining (admittedly sometimes erroneously) whether the candidate RAND is in a set of previously used RAND values. The components of the vector data structure (21) are set to one or left at zero depending on whether pointers corresponding to the previously used RAND values point to them. The pointers can be hash functions or can be constructed from the previously used RAND values. To provide for smooth filter performance at points in time when the Bloom filter is full and cannot hold information for any new previously used RAND values, the vector data structure (21) is partitioned into more than one part, and only one part is reset and re-initialized at a time.
    • 基于使用包括矢量数据结构(21)的布隆过滤器来确定(确实有时是错误的)的方式,由通信终端(10)用于检查EAP / SIM RAND质询中的候选RAND是否可能是重播, 候选RAND是否是一组先前使用的RAND值。 取决于与先前使用的RAND值相对应的指针是否指向矢量数据结构(21)的分量被设置为一个或左边为零。 指针可以是散列函数,也可以从先前使用的RAND值构造。 为了在布隆过滤器已满并且不能保存任何新的先前使用的RAND值的信息的时间点提供平稳的滤波器性能,向量数据结构(21)被划分成多于一个部分,并且只有一个部分被重置,并且 一次重新初始化。
    • 8. 发明授权
    • Replay prevention mechanism for EAP/SIM authentication
    • EAP / SIM认证重放防范机制
    • US07418595B2
    • 2008-08-26
    • US10751300
    • 2004-01-02
    • Pasi EronenHenry HaverinenKaisa Nyberg
    • Pasi EronenHenry HaverinenKaisa Nyberg
    • H04L9/00
    • H04L9/002H04L9/3236H04L9/3271H04L2209/80H04W12/06
    • A method for use by a telecommunication terminal (10) in checking whether a candidate RAND in an EAP/SIM RAND challenge is likely a replay, based on using a Bloom filter including a vector data structure (21) for determining (admittedly sometimes erroneously) whether the candidate RAND is in a set of previously used RAND values. The components of the vector data structure (21) are set to one or left at zero depending on whether pointers corresponding to the previously used RAND values point to them. The pointers can be hash functions or can be constructed from the previously used RAND values. To provide for smooth filter performance at points in time when the Bloom filter is full and cannot hold information for any new previously used RAND values, the vector data structure (21) is partitioned into more than one part, and only one part is reset and re-initialized at a time.
    • 基于使用包括矢量数据结构(21)的布隆过滤器来确定(确实有时是错误的)的方式,由通信终端(10)用于检查EAP / SIM RAND质询中的候选RAND是否可能是重播, 候选RAND是否是一组先前使用的RAND值。 取决于与先前使用的RAND值相对应的指针是否指向矢量数据结构(21)的分量被设置为一个或左边为零。 指针可以是散列函数,也可以从先前使用的RAND值构造。 为了在布隆过滤器已满并且不能保存任何新的先前使用的RAND值的信息的时间点提供平稳的滤波器性能,向量数据结构(21)被划分成多于一个部分,并且只有一个部分被重置,并且 一次重新初始化。