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    • 1. 发明授权
    • Securing multiple links and paths in a wireless mesh network including rapid roaming
    • 在无线网状网络中保护多个链路和路径,包括快速漫游
    • US08037305B2
    • 2011-10-11
    • US11771027
    • 2007-06-29
    • Shahriar I. RahmanNancy Cam-WingetKalyan R. Dharanipragada
    • Shahriar I. RahmanNancy Cam-WingetKalyan R. Dharanipragada
    • H04L9/32
    • H04W12/06H04L63/064H04L63/068H04L63/08H04L63/162H04N21/4126H04W12/04H04W76/10H04W84/18H04W88/08
    • A method and logic encoded in tangible media and apparatus for securing links between a mesh point and one or more identities of one or more parent mesh points of a wireless mesh network in order to secure the links. A first association is carried out to one of the identities of one of the parent mesh points. The first mesh point undergoes a mutual authentication with an authenticator and announces the possibility of multiple links and/or multiple paths. The authentication generates a first master key from which the root master key of the key hierarchy is derived so that other master keys for different identities are derivable using a hierarchy. The mesh point undergoes a 4-way handshake to derive a first transient key. Other transient keys are obtained by a fast roaming method without having to re-undergo a backend authentication, the other transient keys being for other links and/or paths and derived using the hierarchy.
    • 在有形媒体和装置中编码的方法和逻辑,用于保护网状点与无线网状网络的一个或多个父网格点的一个或多个身份之间的链接,以便保护链接。 对一个父网点的一个身份进行第一个关联。 第一个网格点与一个验证器进行相互认证,并宣布多个链路和/或多条路径的可能性。 认证生成第一主密钥,从中导出密钥层次的根主密钥,以便使用层次结构可导出不同身份的其他主密钥。 网格点经历四次握手以得到第一个暂时密钥。 通过快速漫游方法获得其他瞬态密钥,而不必重新接受后端认证,其他暂时密钥用于其他链路和/或路径,并使用层次结构派生。
    • 4. 发明授权
    • System and method for securing mesh access points in a wireless mesh network, including rapid roaming
    • 用于在无线网状网络中保护网络接入点的系统和方法,包括快速漫游
    • US08023478B2
    • 2011-09-20
    • US11456045
    • 2006-07-06
    • Nancy Cam-WingetShahriar I. Rahman
    • Nancy Cam-WingetShahriar I. Rahman
    • H04Q7/24H04L9/32
    • H04W12/06H04L63/064H04L63/068H04L63/08H04L63/162H04N21/4126H04W12/04H04W76/10H04W84/18H04W88/08
    • An authentication method in a mesh AP including using standard IEEE 802.11i mechanisms between the mesh AP and an authenticator for authenticating the mesh AP to become a child mesh AP with a secure layer-2 link to a first parent mesh AP that has a secure tunnel to a Controller, including, after a layer-2 link between the child mesh AP and the first parent mesh AP is secured, undergoing a join exchange for form a secure tunnel between the child mesh AP and the Controller. Further, a fast roaming method for re-establishing a secure layer-2 link with a new parent mesh AP including, while the mesh AP is a child mesh AP to the first parent mesh AP and has a secure layer-2 link to the first parent mesh AP, caching key information and wireless mesh network identity information, and using the cached information to establish a secure layer-2 link with a new parent mesh AP without having to undergo a 4-way authentication. Further, while the mesh AP is a child mesh AP to the first parent mesh AP, has a secure layer-2 link to the first parent mesh AP, and has a secure tunnel to the Controller, caching session information on the secure tunnel, and using the cached information to re establish the secure tunnel with the Controller, the secure tunnel now via the new mesh AP.
    • 网格AP中的认证方法,包括使用网格AP和认证器之间的标准IEEE 802.11i机制,用于认证网格AP以成为具有到具有安全隧道的第一父网状网AP的安全层-2链路的子网AP 包括在子网格AP和第一父网状网AP之间的第二层链路被保护之后,经历连接交换以在子网格AP和控制器之间形成安全隧道。 此外,一种快速漫游方法,用于与新的父网状网AP重新建立安全层-2链路,其中网格AP是对第一父网状网AP的子网格AP,并且具有到第一网络AP的安全层2链路 父网格AP,高速缓存关键信息和无线网状网络身份信息,并使用缓存信息与新的父网格AP建立安全的第二层链路,而不必进行4路认证。 此外,当网格AP是到第一父网状网AP的子网格AP时,具有到第一父网状AP的安全层-2链路,并且具有到控制器的安全隧道,在安全隧道上缓存会话信息,以及 使用缓存的信息重新建立与Controller的安全通道,即现在通过新的网格AP的安全隧道。