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    • 3. 发明授权
    • Method and device for dynamic deployment of trust bridges in an ad hoc wireless network
    • 用于在自组织无线网络中动态部署信任网桥的方法和设备
    • US08539225B2
    • 2013-09-17
    • US12112319
    • 2008-04-30
    • Liang GuoQi BaoDonald E. Eastlake, IIIWhay Chiou LeeAnthony R. Metke
    • Liang GuoQi BaoDonald E. Eastlake, IIIWhay Chiou LeeAnthony R. Metke
    • H04L29/06
    • H04L63/0823H04W84/12
    • A method for deploying a trust bridge in an ad hoc wireless network can provide interoperability for multi-organizational authentication. The method includes processing at a delegate certification authority (DCA) node device authorizations received from of a plurality of certification authorities (CAs) of different organizations, where the authorizations authorize the DCA node device to serve as a DCA representing the CAs (step 1105). The DCA node device then processes context information received from the ad hoc wireless network (step 1110). Next, the DCA node device determines, based on the context information, that a second node device should be enabled as a new trust bridge (step 1115). The DCA node device then performs a trust bridge deployment to enable the second node device to serve as the new trust bridge (step 1120).
    • 在自组织无线网络中部署信任网桥的方法可以为多机构认证提供互操作性。 该方法包括在来自不同组织的多个认证机构(CA)的接收认证机构(DCA)节点设备授权处理,其中授权授权DCA节点设备充当代表CA的DCA(步骤1105) 。 DCA节点设备然后处理从自组织无线网络接收的上下文信息(步骤1110)。 接下来,DCA节点设备基于上下文信息确定第二节点设备应该被启用为新的信任桥(步骤1115)。 DCA节点设备然后执行信任桥部署以使得第二节点设备能够用作新的信任桥(步骤1120)。
    • 5. 发明申请
    • Wireless relay device deployment methods and apparatus
    • 无线中继设备部署方法和装置
    • US20080101325A1
    • 2008-05-01
    • US11590359
    • 2006-10-31
    • Qi BaoWhay Chiou Lee
    • Qi BaoWhay Chiou Lee
    • H04J3/00
    • H04W24/02H04B7/2606H04W16/18H04W16/26
    • In an embodiment, an adaptively-augmentable wireless network (100, FIG. 1) may include at least one mobile device (110-115) and at least one relay device (104-109). During network setup, a mobile device associated with a first host user may determine (505, FIG. 5) that no relay device signal is receivable by the mobile device which has an adequate signal quality. When an undeployed relay device is not available to the first host user, he mobile device may transmit (508) a deployment request message (700, FIG. 7). Another mobile device associated with a second host user may receive (902, FIG. 9) the deployment request message, and may determine (908) whether to initiate deployment of an undeployed relay device associated with the second host user. When the other mobile device decides to initiate deployment, it may transmit (912) a responsive deployment announcement message (800, FIG. 8). Accordingly, collaborative relay device deployment is achievable.
    • 在一个实施例中,自适应增强的无线网络(100,图1)可以包括至少一个移动设备(110-1105)和至少一个中继设备(104-109)。 在网络建立期间,与第一主机用户相关联的移动设备可以确定(505,图5)没有中继设备信号可被具有足够信号质量的移动设备接收。 当未部署的中继设备对于第一主机用户不可用时,他的移动设备可以发送(508)部署请求消息(700,图7)。 与第二主机用户相关联的另一个移动设备可以接收(902,图9)部署请求消息,并且可以确定(908)是否启动与第二主机用户相关联的未部署的中继设备的部署。 当另一个移动设备决定启动部署时,它可以发送(912)响应部署通知消息(图8中的800)。 因此,可实现协同中继设备部署。
    • 6. 发明授权
    • Method and apparatus for priority-based load balancing for use in an extended local area network
    • 用于扩展局域网的基于优先级的负载均衡的方法和装置
    • US06717950B2
    • 2004-04-06
    • US10206553
    • 2002-07-26
    • King-Shan LuiWhay Chiou Lee
    • King-Shan LuiWhay Chiou Lee
    • H04L1228
    • H04L45/12H04L12/462H04L45/00
    • Bridges (10, 12, 14) are used to interconnect local area networks transparently. In the IEEE 802.1D standard for bridges, a spanning tree is built among the bridges for loop-free frame forwarding (FIG. 10). Although this approach is simple, it does not support all-pair shortest paths. A novel bridge protocol is employed that attempts to find and forward frames over alternate paths that are shorter than their corresponding tree paths on the standard spanning tree, and makes use of the standard spanning tree for default forwarding. The protocol, referred to as the Spanning Tree Alternate Routing (STAR) Bridge Protocol, is backward compatible with the IEEE 802.1D standard and has a complexity that is comparable to that of the standard and other existing protocols and further includes an ability to prioritize the forwarding of frames over at least two different paths responsive to a priority value carried by a frame to be forwarded.
    • 桥接(10,12,14)用于透明地连接局域网。 在IEEE 802.1D标准中,桥接器之间建立一个生成树,用于无环路转发(图10)。 虽然这种方法很简单,但它不支持全对最短路径。 采用一种新颖的桥接协议,尝试通过比标准生成树上相应的树路径短的备用路径查找和转发帧,并利用标准生成树进行默认转发。 称为生成树替代路由(STAR)网桥协议的协议与IEEE 802.1D标准向后兼容,具有与标准和其他现有协议相当的复杂性,并且还包括将 响应于要转发的帧承载的优先级值,在至少两个不同的路径上转发帧。
    • 7. 发明授权
    • Priority-based admission control in a network with variable channel data rates
    • 具有可变信道数据速率的网络中基于优先级的接纳控制
    • US07860002B2
    • 2010-12-28
    • US12173804
    • 2008-07-15
    • Whay Chiou LeeJohn R. BarrStephen P. EmeottRavishankar RamamirthamS. David Silk
    • Whay Chiou LeeJohn R. BarrStephen P. EmeottRavishankar RamamirthamS. David Silk
    • H04L1/00
    • H04W74/0875H04L47/14H04L47/24H04W28/22
    • A method for priority-based admission control in a network, comprises receiving an admission request for transmitting an information flow to a network through a communication channel and determining an admissible region within a range of a channel data rate of a communication channel for an information flow in response to a priority of the information flow, where the priority of the information flow is one of a plurality of priorities of information flow. The admissible region is one of a plurality of admissible regions within the channel data rate range that correspond to different ones of the plurality of priorities of information flow, respectively, and each of the plurality of admissible regions within the channel data rate range is useable for transmitting information flow with a respective one of the plurality of priorities. Further included in the method is determining an available channel data rate of the communication channel for receiving the information flow by the network, and granting the admission request for the information flow after determining that the available channel data rate of the communication channel is within the admissible region of the channel data rate range.
    • 一种用于网络中基于优先权的接纳控制的方法,包括:通过通信信道接收用于向网络发送信息流的准入请求,并且确定用于信息流的通信信道的信道数据速率范围内的允许区域 响应于信息流的优先级,其中信息流的优先级是信息流的多个优先级之一。 允许区域是信道数据速率范围内的多个允许区域之一,其对应于信息流的多个优先级中的不同优先级,并且信道数据速率范围内的多个允许区域中的每一个可用于 以所述多个优先级中的相应一个发送信息流。 该方法还包括:确定用于由网络接收信息流的通信信道的可用信道数据速率,以及在确定通信信道的可用信道数据速率在可允许的范围之内之前授予信息流的准入请求 区域的通道数据速率范围。