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    • 1. 发明授权
    • Network element for implementing scheduled high-power PTP and low-power PTMP transmissions
    • 用于实现调度的大功率PTP和低功率PTMP传输的网元
    • US07466985B1
    • 2008-12-16
    • US11241145
    • 2005-09-30
    • Martin Ridgway HandforthAnoop NannraJohn StankusLarry MarcantiBrian Vezza
    • Martin Ridgway HandforthAnoop NannraJohn StankusLarry MarcantiBrian Vezza
    • H04Q7/20
    • H04W72/08H04W84/047H04W92/12Y02D70/142Y02D70/146Y02D70/22
    • A network element is configured to implement scheduled high-power Point-To-Point (PTP) and low-power Point-To-MultiPoint (TMP) transmissions. The high-power PTP and low-power PTMP transmissions may be scheduled as bursts on an 802.16 network to occur in both the downlink subframe and uplink subframe on a given frequency channel in the wireless network. The use of an air interface for both types of communications allows the PTP and PTMP communications to be scheduled relative to each other in a unified manner to increase quality of service and minimize interference between the backhaul PTP and access PTMP networks, even though the PTP and PTMP communications take place on the same channel using the same underlying wireless technology. Buffers may be used to store data received in a PTP downlink burst prior to transmission in a PTMP downlink burst, and may be used to store data received in an uplink PTMP burst prior to transmission in an uplink PTP burst.
    • 网元被配置为实现调度的高功率点对点(PTP)和低功率点到多点(TMP)传输。 高功率PTP和低功率PTMP传输可以被调度为802.16网络上的突发,以在无线网络中的给定频率信道上的下行链路子帧和上行链路子帧中发生。 对于两种类型的通信使用空中接口允许以统一的方式相对于彼此进行调度,以增加服务质量并最小化回程PTP和接入PTMP网络之间的干扰,即使PTP和 PTMP通信使用相同的底层无线技术在相同的信道上进行。 缓冲器可以用于存储在PTMP下行链路突发中传输之前在PTP下行链路突发中接收的数据,并且可以用于在上行链路PTP突发中传输之前存储在上行链路PTMP突发中接收的数据。
    • 6. 发明授权
    • Method and system for handover in cellular wireless using route programming and training processes
    • 使用路由规划和训练过程的蜂窝无线终端切换方法和系统
    • US08160613B2
    • 2012-04-17
    • US11303991
    • 2005-12-19
    • Martin HandforthGuy DuxburyLarry Marcanti
    • Martin HandforthGuy DuxburyLarry Marcanti
    • H04W24/00H04W36/00
    • H04W36/32
    • A method and system for managing handover where a database that receives location information about a moving object includes information regarding which base station is used in a current radio link connection and which base stations were used from historic radio link connections. Using the base station radio link history of the object and an electronic map, a processor coupled to the memory of the database selects which physical path the moving object is using. Upon matching the object's path with a history of path routes on the list, the processor will apply an optimized handoff sequence to the moving object. The optimized route can be derived from an algorithm that processes previous historical data from moving objects traveling on the same route. Methods of providing the location of moving objects via location sensors may be used to provide the database with higher resolution information about a moving object's location on an electronic map and allow further enhancement of the handoff optimization. Generally, location data is used to quickly determine which route the moving object is using and more quickly assign an optimized handoff sequence. Historical data along known routes can include time and spatial information to be processed by the routing algorithm. The database may reside in a central location or within each moving object or a combination of both.
    • 一种用于管理切换的方法和系统,其中接收关于移动对象的位置信息的数据库包括关于在当前无线电链路连接中使用哪个基站的信息以及从历史无线电链路连接使用哪些基站。 使用对象的基站无线电链路历史和电子地图,耦合到数据库的存储器的处理器选择移动对象正在使用的物理路径。 在将对象的路径与列表上的路径路径的历史匹配时,处理器将对移动对象应用优化的切换序列。 优化的路由可以从处理在相同路线上行进的移动物体中的先前历史数据的算法导出。 通过位置传感器提供移动物体的位置的方法可用于向数据库提供关于电子地图上的移动物体位置的更高分辨率的信息,并允许进一步增强切换优化。 通常,位置数据用于快速确定移动对象正在使用的路由,并更快地分配优化的切换序列。 沿着已知路线的历史数据可以包括由路由算法处理的时间和空间信息。 数据库可以驻留在中央位置或每个移动对象内或两者的组合中。
    • 7. 发明申请
    • Dielectric-filled transmission lines
    • 介质填充输电线路
    • US20060012452A1
    • 2006-01-19
    • US10890054
    • 2004-07-13
    • Herman KwongAneta WyrzykowskaLarry Marcanti
    • Herman KwongAneta WyrzykowskaLarry Marcanti
    • H01P3/08H01P3/06
    • H05K1/0221H01P3/06H01P5/183H05K1/024H05K2201/09672H05K2201/09809H05K2201/09981
    • A printed circuit board transmission line has an outer conductive wall surrounding an inner dielectric core. The transmission line may be disposed inside a grounded shielding to provide a form of coaxial conductor that mitigates cross talk from adjacent transmission lines and EMI. Further, groups of dielectric-core transmission lines may be disposed within a single grounded shield. For example, edge coupled differential pairs may be disposed in parallel with each other on a plane defined by a layer of the printed circuit board, i.e., side-by-side. Further, broadside-coupled differential pairs of dielectric-core transmission lines may be disposed in parallel with each other in a stack which is orthogonal with the plane defined by a layer of the printed circuit board, i.e., one on top of the other. Further, a plurality of dielectric-core transmission lines which may include all or ones of single-ended lines and differential pairs may be disposed within a single grounded shield.
    • 印刷电路板传输线具有围绕内部介质芯的外部导电壁。 传输线可以设置在接地屏蔽内,以提供一种形式的同轴导体,其减轻了来自相邻传输线的串扰和EMI。 此外,介质芯传输线组可以设置在单个接地屏蔽内。 例如,边缘耦合差动对可以在由印刷电路板的层(即并排)限定的平面上彼此平行地设置。 此外,介质芯传输线的宽侧耦合差分对可以彼此平行地布置在与由印刷电路板的层(即,一个在另一个上面)限定的平面正交的堆叠中。 此外,可以包括单端线路和差分对线路中的全部或者多条的多个介质芯线传输线路设置在单个接地屏蔽层内。
    • 8. 发明授权
    • Dielectric-filled transmission lines
    • 介质填充输电线路
    • US07432776B2
    • 2008-10-07
    • US10890054
    • 2004-07-13
    • Herman KwongAneta WyrzykowskaLarry Marcanti
    • Herman KwongAneta WyrzykowskaLarry Marcanti
    • H01P3/08
    • H05K1/0221H01P3/06H01P5/183H05K1/024H05K2201/09672H05K2201/09809H05K2201/09981
    • A printed circuit board transmission line has an outer conductive wall surrounding an inner dielectric core. The transmission line may be disposed inside a grounded shielding to provide a form of coaxial conductor that mitigates cross talk from adjacent transmission lines and EMI. Further, groups of dielectric-core transmission lines may be disposed within a single grounded shield. For example, edge coupled differential pairs may be disposed in parallel with each other on a plane defined by a layer of the printed circuit board, i.e., side-by-side. Further, broadside-coupled differential pairs of dielectric-core transmission lines may be disposed in parallel with each other in a stack which is orthogonal with the plane defined by a layer of the printed circuit board, i.e., one on top of the other. Further, a plurality of dielectric-core transmission lines which may include all or ones of single-ended lines and differential pairs may be disposed within a single grounded shield.
    • 印刷电路板传输线具有围绕内部介质芯的外部导电壁。 传输线可以设置在接地屏蔽内,以提供一种形式的同轴导体,其减轻了来自相邻传输线的串扰和EMI。 此外,介质芯传输线组可以设置在单个接地屏蔽内。 例如,边缘耦合差动对可以在由印刷电路板的层(即并排)限定的平面上彼此平行地设置。 此外,介质芯传输线的宽侧耦合差分对可以彼此平行地布置在与由印刷电路板的层(即,一个在另一个上面)限定的平面正交的堆叠中。 此外,可以包括单端线路和差分对线路中的全部或者多条的多个介质芯线传输线路设置在单个接地屏蔽层内。