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    • 1. 发明申请
    • WWAN RADIO LINK QUALITY NAVIGATION FOR A DRONE
    • 无线电广播链路质量导航无人机
    • WO2018013234A1
    • 2018-01-18
    • PCT/US2017/034222
    • 2017-05-24
    • QUALCOMM INCORPORATED
    • TEAGUE, Edward Harrison
    • G05D1/00
    • Various embodiments include methods of navigating a drone that may include determining whether a radio link quality trigger event associated with communications with the drone has occurred while the drone travels along a set route to a destination. The radio link quality trigger event may correspond to predetermined characteristics of radio link quality. The drone may be steered to follow a search maneuver for improving radio link quality in response to determining the radio link quality trigger event has occurred. The search maneuver may follow a preconfigured deviation pattern that is configured before determining whether the radio link quality trigger event has occurred and departs from the set route.
    • 各种实施例包括导航无人机的方法,其可包括确定在无人机沿着设定路线行进到目的地时是否发生了与无人机的通信相关联的无线电链路质量触发事件。 无线电链路质量触发事件可以对应于无线电链路质量的预定特性。 响应于确定无线电链路质量触发事件已经发生,无人驾驶飞机可以被引导以遵循搜索机动来改善无线电链路质量。 搜索策略可以遵循预先配置的偏差模式,该偏差模式在确定无线电链路质量触发事件是否已经发生并偏离设定路线之前被配置。
    • 6. 发明申请
    • A METHOD AND APPARATUS FOR TRANSMITTING AND RECEIVING FLAB OVER F-SSCH IN WIRELESS COMMUNICATION SYSTEM
    • 在无线通信系统中发送和接收F-SSCH上的FLAB的方法和装置
    • WO2007050906A1
    • 2007-05-03
    • PCT/US2006/042020
    • 2006-10-27
    • QUALCOMM IncorporatedTEAGUE, Edward Harrison
    • TEAGUE, Edward Harrison
    • H04Q7/38
    • H04W24/02H04B7/216H04B7/2628H04J13/00H04L5/0057H04L27/2601H04W52/146H04W52/16H04W52/325H04W52/48H04W52/58H04W72/0473H04W72/085Y02D30/32
    • A method and apparatus for transmitting a FLAB block is provided, comprising generating the FLAB block comprising a 11-bit MACID field, a ChID field of length NRL_CHID bits wherein the ChID field is set to a value to identify a set of hop-ports assigned to an access terminal, a 5 bit Packet Format (PF) field, wherein the access network sets this field to indicate the packet format that is to be used on subsequent transmissions on the same interlace and the first bit of the PF indicates the pilot pattern, a 1 bit Extended Transmission field wherein the Extended transmission field indicates whether hop-port assignment is on standard or extended Physical layer (PHY) frames and a 1 bit Supplemental field, wherein Supplemental field indicates whether an assignment is to be added or replaced on the interlace to be occupied by a given assignment and transmitting the FLAB block over the F-SSCH. A method and apparatus for receiving the FLAB block is further provided, comprising receiving the FLAB block and processing the FLAB block
    • 提供了一种用于发送FLAB块的方法和装置,包括生成包括11位MACID字段的FLAB块,长度为NRL_CHID比特的ChID字段,其中ChID字段被设置为一个值,以标识一组分配的跳转端口 到接入终端,5比特分组格式(PF)字段,其中接入网络设置该字段以指示将在相同交织上的后续传输上使用的分组格式,并且PF的第一比特指示导频模式 1比特扩展传输字段,其中扩展传输字段指示跳转端口分配是在标准或扩展的物理层(PHY)帧和1比特补充字段上,其中补充字段指示是否要将分配添加或替换 该交错将由给定的分配占用,并通过F-SSCH发送FLAB块。 还提供了一种用于接收所述FLAB块的方法和装置,包括接收所述FLAB块并处理所述FLAB块
    • 9. 发明申请
    • MANAGING A PARAMETER OF AN UNMANNED AUTONOMOUS VEHICLE BASED ON MANNED AVIATION DATA
    • 基于人工航空数据管理无人驾驶自动驾驶汽车的参数
    • WO2018013233A1
    • 2018-01-18
    • PCT/US2017/034218
    • 2017-05-24
    • QUALCOMM INCORPORATED
    • TEAGUE, Edward Harrison
    • H04W24/00
    • Embodiments include devices and methods for an unmanned autonomous vehicle (UAV) to receive manned aviation data from communication equipment available on the UAV without requiring the use of manned aviation radios and transponder equipment. A processor of the UAV may receive manned aviation data over a communication link with a communication network (e.g., the Internet) coupled to a server or network element that has access to manned aviation data. Communications with the communication network may be accomplished via the same communication channels used to transmit and receive mission-critical and payload communications. The processor may analyze the manned aviation data stream to obtain and identify relevant data, and may adjust a parameter of the UAV based on the analyzed manned aviation data stream. In various embodiments, the processor of the UAV may send UAV flight information to the communication network for inclusion in a manned aviation radio system broadcast.
    • 实施例包括用于无人自动车辆(UAV)的设备和方法,以从无人飞行器上可用的通信设备接收有人航空数据,而不需要使用有人驾驶航空无线电和应答设备。 UAV的处理器可以通过与通信网络(例如因特网)的通信链路接收有人航空数据,该通信网络耦合到可以访问有人航空数据的服务器或网络元件。 与通信网络的通信可以通过用于发送和接收任务关键型和有效载荷通信的相同通信信道来完成。 处理器可以分析有人航空数据流以获得和识别相关数据,并且可以基于分析的有人航空数据流来调整UAV的参数。 在各种实施例中,UAV的处理器可将UAV飞行信息发送到通信网络以包含在有人航空无线电系统广播中。
    • 10. 发明申请
    • APPLICATION-CONTROLLED GRANULARITY FOR POWER-EFFICIENT CLASSIFICATION
    • 用于功率有效分类的应用控制格式
    • WO2014143515A1
    • 2014-09-18
    • PCT/US2014/017236
    • 2014-02-20
    • QUALCOMM INCORPORATED
    • GROKOP, Leonard HenryTEAGUE, Edward Harrison
    • G06F1/32H04M1/725
    • G06N7/005G06F1/3234H04M1/72569Y02D70/1262Y02D70/142Y02D70/144Y02D70/146Y02D70/164
    • Systems and methods for providing application-controlled, power-efficient context (state) classification are described herein. An apparatus for performing context classification with adjustable granularity as described herein includes a classifier controller configured to receive a request for a context classification and a granularity input associated with the request; and a context classifier communicatively coupled to the classifier controller and configured to receive the request and the granularity input from the classifier controller, to select a resource usage level for the context classification based on the granularity input, wherein a granularity input indicating a higher granularity level is associated with a higher resource usage level and a granularity input indicating a lower granularity level is associated with a lower resource usage level, and to perform the context classification at the selected resource usage level.
    • 在此描述用于提供应用控制的,功率高效的上下文(状态)分类的系统和方法。 用于执行如本文所述的具有可调颗粒度的上下文分类的装置包括:分类器控制器,被配置为接收与上述请求相关联的上下文分类和粒度输入的请求; 以及上下文分类器,其通信地耦合到所述分类器控制器并且被配置为从所述分类器控制器接收所述请求和所述粒度输入,以基于所述粒度输入来选择所述上下文分类的资源使用级别,其中指示较高粒度级别的粒度输入 与更高的资源使用级别相关联,并且指示较低粒度级别的粒度输入与较低的资源使用级别相关联,并且在所选择的资源使用级别执行上下文分类。