会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明申请
    • OPTIMUM ROUTE PLANNING FOR SERVICE VEHICLES
    • 服务车辆的最佳路线规划
    • WO2008137083A2
    • 2008-11-13
    • PCT/US2008/005697
    • 2008-05-02
    • KABUSHIKI KAISHA TOSHIBATELCORDIA TECHNOLOGIES, INC.YAQUB, RaziqFAJARDO, Victor
    • YAQUB, RaziqFAJARDO, Victor
    • G01C21/34
    • G06Q10/047G01C21/343
    • Transportation costs are minimized with a novel system for optimizing a route for a service vehicle, for example, a package delivery van. Based upon static and dynamic information, a computer on board the service vehicle determines an optimum route for the vehicle to travel between multiple locations. The computer on board the service vehicle communicates wirelessly to receive any pertinent dynamic information which has changed (e.g., traffic congestion, the presence of a customer at a deliver location, or a modification of location). The computer then recalculates the optimum route for the vehicle and guides the driver of the vehicle in accordance with the newly determined optimum route. The on board computer continues to check for any updates, and recalculates the optimum route throughout the day. Thus, the optimum route may be selected based upon the latest available information while avoiding heavy signal traffic on the wireless network.
    • 通过用于优化服务车辆的路线的新颖系统,例如包裹运输车,运输成本被最小化。 基于静态和动态信息,服务车辆上的计算机确定车辆在多个位置之间行进的最佳路线。 服务车辆上的计算机以无线方式进行通信,以接收已经改变的任何相关动态信息(例如,交通拥堵,交付位置处的客户的存在或位置的修改)。 计算机然后重新计算车辆的最佳路线,并根据新确定的最佳路线引导车辆驾驶员。 车载计算机继续检查任何更新,并重新计算最佳路线全天。 因此,可以基于最新的可用信息来选择最佳路由,同时避免无线网络上的重信号业务。
    • 3. 发明申请
    • CONVERGED PERSONAL AREA NETWORK SERVICE METHOD AND SYSTEM
    • 完成个人区域网络服务方法和系统
    • WO2010132694A1
    • 2010-11-18
    • PCT/US2010/034776
    • 2010-05-13
    • KABUSHIKI KAISHA TOSHIBATELCORDIA TECHNOLOGIES, INC.YAQUB, Raziq
    • YAQUB, Raziq
    • G06F15/173
    • G06F17/30265G06F17/3028
    • A converged personal area network service system uses information provided by personal network elements (PNEs) to generate an event report file to store along with a data file to commemorate an event. When the data file is created, such as taking a picture, an event recording device sends requests to PNEs, sensors and other devices within the network to provide information corresponding to a timestamp based on the event. The information, if available, is sent to the event recording device, where it is aggregated. The event recording device generates an event report file that includes fields storing the information pertaining to the data file. The event report file is stored along with the data file for retrieval or use at a later time.
    • 融合个人区域网络服务系统使用由个人网络元件(PNE)提供的信息来生成事件报告文件以与数据文件一起存储以纪念事件。 当创建数据文件(例如拍摄图像)时,事件记录装置向网络中的PNE,传感器和其他设备发送请求,以基于事件提供对应于时间戳的信息。 信息(如果可用)被发送到聚合的事件记录设备。 事件记录装置生成包含存储与数据文件有关的信息的字段的事件报告文件。 事件报告文件与数据文件一起存储以供以后再次使用。
    • 8. 发明申请
    • DISTRIBUTION OF SESSION KEYS TO THE SELECTED MULTIPLE ACCESS POINTS (APS) BASED ON GEO-LOCATION OF APS
    • 基于APS的地理位置分配选择到选定的多个访问点(APS)
    • WO2007146406A2
    • 2007-12-21
    • PCT/US2007/014016
    • 2007-06-14
    • TELCORDIA TECHNOLOGIES, INC.TOSHIBA, Kabushiki, KaishaYAQUB, Raziq
    • YAQUB, Raziq
    • H04Q7/00
    • H04W12/04G01S5/02G01S19/14H04L63/062H04L63/107H04W36/0016H04W84/12H04W88/08
    • In the public WLAN systems, reliable user re-authentication for mobility support is an essential step. However, re-authentication during handoff procedures causes long handoff latency which deteriorates the quality of service specifically for real-time multimedia applications. One possible solution is to authenticate the Mobile Node (MN) in advance with all the neighboring Access Points (APs) and distribute the Session Keys to them. However, the key issue is how to optimally and efficiently select the neighboring APs. In the preferred embodiments, we propose a system that takes into account the user current "Geo-Location". "Mobility Pattern" and "Application Running on MN": estimates the "Expected Mobility Zone" (EMZ) and selects an appropriate set of candidate APs corresponding to the MN's geo-location. The EMZ may comprise of APs belonging to Intra-domain". "Inter-domain" or "Inter-technology Networks" (e.g., WLAN, WiMAX1 and Cellular etc). The system assumes that not only the Mobile Nodes but also the Fixed Nodes (APs or Base Stations) are capable of knowing their Geo- Location Coordinates X, Y, Z. This capability may come either by integrating GPS receiver or through any other alternate, state of the art or future positioning technologies in the APs.
    • 在公共WLAN系统中,可靠的用户重新认证用于移动性支持是必不可少的一步。 然而,在切换过程中的重新认证导致长的切换等待时间,这恶化了专门用于实时多媒体应用的服务质量。 一个可能的解决方案是提前与所有相邻接入点(AP)认证移动节点(MN),并将会话密钥分发给他们。 然而,关键问题是如何优化和有效地选择相邻的AP。 在优选实施例中,我们提出考虑用户当前的“地理位置”的系统。 “移动模式”和“在MN上运行的应用程序”:估计“预期移动区域”(EMZ),并选择与MN的地理位置对应的适当的候选AP集合。 EMZ可以包括属于域内的AP“域间”或“技术间网络”(例如,WLAN,WiMAX1和蜂窝等),系统假定不仅移动节点而且固定节点 (AP或基站)能够知道它们的地理位置坐标X,Y,Z.该能力可以通过将GPS接收机或通过任何其他备选的,现有技术或未来定位技术集成在AP中来实现。
    • 10. 发明申请
    • QUALITY OF SERVICE PROVISIONING THROUGH ADAPTABLE AND NETWORK REGULATED CHANNEL ACCESS PARAMETERS
    • 通过适应性和网络规定的通道访问参数提供的服务质量
    • WO2007103280A2
    • 2007-09-13
    • PCT/US2007/005538
    • 2007-03-02
    • TELCORDIA TECHNOLOGIES, INC.YAQUB, RaziqELAOUD, Moncef
    • YAQUB, RaziqELAOUD, Moncef
    • H04Q7/24
    • H04W28/24H04W16/04H04W16/10H04W28/16
    • One or more system and/or method of dynamically setting values of Channel Access Parameters employing a Load Supervision Manager entity, a Quality of Service Parameters Manager entity, and an Access Point. The entities work with the Access Point and continuously monitors network loading conditions and setting Channel Access Parameters values in response to network loading conditions. The Load Supervision Manager is a controlling and/or supervisory entity that sits at a network level receives information from the QoS Parameters Manager which sits at a subnet level, and judges prevailing loading conditions. The prevailing loading conditions include such factors as the number of Mobile Nodes and the applications or ACs they are running on in each subnet. The QoS Parameters Manager assesses the possible near future loading condition in each subnet including monitoring the hand-off Mobile Nodes and issues directives to QoS Parameters Managers.
    • 使用负载监督管理器实体,服务质量参数管理器实体和接入点动态地设置信道接入参数值的一个或多个系统和/或方法。 实体与接入点一起工作,并连续监视网络负载条件,并根据网络负载条件设置通道访问参数值。 负载监督管理器是位于网络级的控制和/或监督实体,从位于子网级别的QoS参数管理器接收信息,并判断当前的负载条件。 主要的加载条件包括移动节点的数量以及它们在每个子网中运行的应用或AC的因素。 QoS参数管理器评估每个子网中可能的近期加载条件,包括监控切换移动节点并向QoS参数管理器发出指令。