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    • 62. 发明授权
    • Hybrid network controller for femtocells and access points
    • 用于毫微微小区和接入点的混合网络控制器
    • US09025534B2
    • 2015-05-05
    • US12470764
    • 2009-05-22
    • Jeyhan KaraoguzNambirajan SeshadriNicholas Ilyadis
    • Jeyhan KaraoguzNambirajan SeshadriNicholas Ilyadis
    • H04W84/04H04W28/16H04W88/08H04W88/12
    • H04W28/16H04W84/045H04W88/08H04W88/12
    • A communication system may comprise a hybrid network controller, femtocells, access points and/or endpoint devices. The hybrid network controller may control communication of information between two or more specified femtocells, access points and/or endpoint devices by communicating control information. The communication of information via the femtocells, access points may be managed by the hybrid network controller. The network controller may handle network traffic associated with the communication of the information. The hybrid network controller may control one or more wired and/or wireless interfaces for handling of the network traffic. Quality of service and/or bandwidth allocation may be managed by the hybrid network controller. Resources utilized by the endpoint devices, the femtocells and/or the access points may be allocated and/or de-allocated by the network controller.
    • 通信系统可以包括混合网络控制器,毫微微小区,接入点和/或端点设备。 混合网络控制器可以通过传送控制信息来控制两个或多个指定的毫微微小区,接入点和/或端点设备之间的信息的通信。 经由毫微微小区,接入点的信息的通信可以由混合网络控制器进行管理。 网络控制器可以处理与信息的通信相关联的网络流量。 混合网络控制器可以控制一个或多个有线和/或无线接口来处理网络业务。 服务质量和/或带宽分配可由混合网络控制器管理。 端点设备,毫微微小区和/或接入点使用的资源可以由网络控制器分配和/或去分配。
    • 63. 发明申请
    • Universal Network Interface Controller
    • 通用网络接口控制器
    • US20130003725A1
    • 2013-01-03
    • US13173189
    • 2011-06-30
    • Ariel HendelMARTIN LUNDNicholas Ilyadis
    • Ariel HendelMARTIN LUNDNicholas Ilyadis
    • H04L12/66
    • H04L49/358H04L49/505
    • A universal network interface controller (UNIC) is provided for interfacing a host computer to a switch fabric, a packet network, or both. The UNIC includes ingress transmit logic designed to transmit switch fabric data in memory associated with the host computer to a switch fabric. The UNIC further includes egress receive logic designed to receive switch fabric data from the switch fabric to store the received switch fabric data in the host memory associated with the host computer. As an option, the ingress transmit logic may be further designed to transmit packet network data in memory associated with the host computer to a packet network, such as Ethernet, and the egress receive logic may be further designed to receive the packet network data from the packet network and to store the received switch fabric data and the received packet network data in the host memory associated with the host computer.
    • 提供通用网络接口控制器(UNIC),用于将主机与交换结构,分组网络或两者接口。 UNIC包括入口传输逻辑,用于将与主计算机相关联的存储器中的交换结构数据传送到交换结构。 UNIC还包括出口接收逻辑,用于从交换结构接收交换结构数据,以将接收的交换结构数据存储在与主计算机相关联的主机存储器中。 作为选择,入口传输逻辑可以进一步被设计为将与主计算机相关联的存储器中的分组网络数据传送到诸如以太网的分组网络,并且出口接收逻辑可以被进一步设计为从 并将接收到的交换结构数据和接收到的分组网络数据存储在与主计算机相关联的主机存储器中。
    • 66. 发明申请
    • TECHNIQUES TO PROVIDE ACCESS POINT AUTHENTICATION FOR WIRELESS NETWORK
    • 为无线网络提供接入点认证的技术
    • US20100031029A1
    • 2010-02-04
    • US12185659
    • 2008-08-04
    • Nicholas Ilyadis
    • Nicholas Ilyadis
    • H04L9/00
    • H04L9/3271H04L9/321H04L9/3263H04L63/0823H04L2209/80H04W12/06
    • According to an example embodiment, an apparatus may include a client device including a processor and memory. The client device may be configured to obtain, via a secure communication, a certificate identifying a publically accessible wireless access point (AP) and a public key for the AP, the AP being publically accessible. The client (or client device) may be configured to generate a challenge, send the challenge to the AP, wherein the AP has a private key securely stored in a hardware security module of the AP. The private key may correspond to the public key for the AP. The client may be configured to receive a response from the AP, the response being generated by the AP based on the challenge and the private key for the AP, and authenticate the AP based on the response.
    • 根据示例实施例,设备可以包括包括处理器和存储器的客户端设备。 客户端设备可经配置以经由安全通信获得识别公共可访问无线接入点(AP)的证书和用于该AP的公开密钥,该AP可公开访问。 客户机(或客户端设备)可以被配置为产生挑战,向AP发送质询,其中AP具有安全地存储在AP的硬件安全模块中的私钥。 私钥可以对应于AP的公钥。 客户端可以被配置为从AP接收响应,该响应由AP基于挑战和AP的私钥生成,并且基于该响应来认证AP。
    • 68. 发明授权
    • Method and apparatus providing network communications between devices using frames with multiple formats
    • 在使用具有多种格式的帧的设备之间提供网络通信的方法和装置
    • US06252888B1
    • 2001-06-26
    • US09060166
    • 1998-04-14
    • David B. Fite, Jr.Nicholas IlyadisRonald M. Salett
    • David B. Fite, Jr.Nicholas IlyadisRonald M. Salett
    • H04J316
    • H04L1/0061H04L12/4645H04L12/467H04L2001/0097
    • A method and an apparatus providing data communications among network devices using tagged and untagged frame formats. In one embodiment, a virtual local area network (VLAN) is implemented using frames that may be transferred among network devices in both tagged and untagged formats. In one embodiment, the frames are transferred among network switches in an untagged format, independent of whether the source devices sent the frames in a tagged or untagged format. In addition, destination devices may receive frames in either a tagged or an untagged format, independent of whether the source devices originally send the frames a tagged or untagged format. Cyclic redundancy check (CRC) code information contained in the frames as originally sent is left unchanged when transferred among the switches of the VLAN, even though the frames may have been modified prior to transfer among switches. New CRC code information is generated for reformatted frames in the switches containing the outbound ports such that reformatted frames with valid CRC codes are forwarded to destination devices. In the event that a switch receives a corrupt frame from a source device, a corresponding corrupt reformatted frame is forwarded to the destination device from the switch.
    • 一种使用标记和未标记的帧格式在网络设备之间提供数据通信的方法和装置。 在一个实施例中,使用可以在标记和未标记格式的网络设备之间传送的帧来实现虚拟局域网(VLAN)。 在一个实施例中,帧以非标记格式在网络交换机之间传送,而与源设备是否以加标签或未标记格式发送帧无关。 此外,目的地设备可以接收标记或未标记格式的帧,而不管源设备是否最初以帧标记或未标记格式发送帧。 原来发送的帧中包含的循环冗余校验(CRC)代码信息在VLAN的交换机之间传输时保持不变,即使帧在交换机之间传输之前可能被修改。 在包含出站端口的交换机中为重新格式化的帧生成新的CRC码信息,使得具有有效CRC码的重新格式化的帧被转发到目的地设备。 如果交换机从源设备接收到损坏的帧,则相应的损坏的重新格式化帧将从交换机转发到目标设备。