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    • 1. 发明申请
    • IDENTIFICATION AND CONNECTIVITY GATEWAY WRISTBAND FOR HOSPITAL AND MEDICAL APPLICATIONS
    • 用于医院和医疗应用的识别和连接网关
    • WO2010144720A1
    • 2010-12-16
    • PCT/US2010/038198
    • 2010-06-10
    • QUALCOMM INCORPORATEDTEAGUE, Edward, Harrison
    • TEAGUE, Edward, Harrison
    • H04W88/04A61B5/00
    • H04W88/04A61B5/002A61B5/0024A61B5/117A61B2562/08G06F19/00G16H10/65G16H40/20H04L67/12H04W88/06
    • A communication gateway wristband serves as a source of patient identification and as an interface between a personal area network (PAN) of miniaturized electronic medical sensors on a patient and a wireless wide-area network (WWAN) such as a hospital network. The gateway wristband includes a PAN transceiver which can establish wireless data links with wireless medical sensors, a WWAN transceiver which can establish a wireless data link with WWAN infrastructure, a memory which stores a patient identifier, and a processor which receives data via the PAN transceiver and relays the patient identifier and the received data to an external network via the WWAN transceiver. The processor manages communications with both the PAN and WWAN transceivers, stores received sensor data in memory, and translates data from the PAN protocol to the WWAN protocol so that sensor data is relayed to the hospital infrastructure.
    • 通信网关腕带作为患者识别的来源,并且作为病人的小型化电子医疗传感器的个人区域网络(PAN)和诸如医院网络的无线广域网(WWAN)之间的接口。 网关腕带包括可与无线医疗传感器建立无线数据链路的PAN收发器,可与WWAN基础设施建立无线数据链路的WWAN收发器,存储患者标识符的存储器,以及经由PAN收发器接收数据的处理器 并通过WWAN收发器将患者标识符和接收到的数据中继到外部网络。 处理器管理与PAN和WWAN收发器的通信,将接收到的传感器数据存储在存储器中,并将数据从PAN协议转换为WWAN协议,从而将传感器数据转发到医院基础设施。
    • 2. 发明申请
    • DYNAMIC IOT SETPOINTS AND INTERFERENCE CONTROL
    • 动态IOT设置和干扰控制
    • WO2010014823A3
    • 2010-05-06
    • PCT/US2009052273
    • 2009-07-30
    • QUALCOMM INCTEAGUE EDWARD HARRISON
    • TEAGUE EDWARD HARRISON
    • H04W52/24H04B17/00H04W72/08
    • H04W52/243H04B17/345H04W72/082
    • Reverse link interference can be controlled by utilizing a dynamic and changeable IoT setpoint, which is a quantitative measurement of total interference received at a base station. The interference can occur when a mobile device in an adjacent sector is communicating over the reverse link. The IoT setpoint can be changed based on conditions occurring in the sector and/or scheduling information for the future. A fast up indicator (Up+) can be transmitted for reverse link interference, which allows the receiving device to take advantage of the fact that additional interference created will not affect the sector. An interference control action can be transmitted in an Other Sector Interference Bit (OSIB) channel over the air or over the backhaul. The interference control action can be determined as a function of the dynamic IoT setpoint.
    • 可以通过利用动态和可变的IoT设定点来控制反向链路干扰,该设定点是在基站处接收的总干扰的定量测量。 当相邻扇区中的移动设备通过反向链路进行通信时,可能发生干扰。 可以基于在扇区中发生的条件和/或将来的调度信息来改变IoT设定点。 可以发送快速向上指示符(Up +)用于反向链路干扰,这允许接收设备利用创建的附加干扰不会影响扇区的事实。 干扰控制动作可以在空中或通过回程的其他扇区干扰位(OSIB)信道中传输。 可以根据动态IoT设定值来确定干扰控制动作。
    • 5. 发明申请
    • VARIED SIGNALING CHANNELS FOR A REVERSE LINK IN A WIRELESS COMMUNICATION SYSTEM
    • 用于无线通信系统中的反向链路的变化的信道
    • WO2007051187A9
    • 2008-06-05
    • PCT/US2006060333
    • 2006-10-27
    • QUALCOMM INCGOROKHOV ALEXEIKHANDEKAR AAMODTEAGUE EDWARD HARRISONSAMPATH HEMANTH
    • GOROKHOV ALEXEIKHANDEKAR AAMODTEAGUE EDWARD HARRISONSAMPATH HEMANTH
    • H04Q7/38
    • H04B7/2656
    • Signaling is efficiently sent on a configurable CDMA control segment. To send signaling, transmission parameters for the CDMA control segment for a serving sector are determined. These parameter may indicate the CDMA control segment size, the frames in which the CDMA control segment is sent, the signaling channels to be sent on the CDMA control segment, and so on. The enabled CDMA signaling channels for a terminal and the average transmission interval for each enabled CDMA signaling channel are determined. For each frame in which the CDMA control segment is sent, the signaling channels to be sent on the CDMA control segment in that frame are determined. The signaling for each signaling channel is processed (e.g., encoded, channelized, scaled, and scrambled). The processed signaling for all signaling channels is combined and mapped to a time-frequency region used for the CDMA control segment in the frame.
    • 在可配置的CDMA控制段上有效地发送信令。 为了发送信令,确定用于服务扇区的CDMA控制段的传输参数。 这些参数可以指示CDMA控制段大小,发送CDMA控制段的帧,在CDMA控制段上发送的信令信道等等。 确定终端的使能的CDMA信令信道和每个使能的CDMA信令信道的平均传输间隔。 对于其中发送CDMA控制段的每个帧,确定要在该帧中的CDMA控制段上发送的信令信道。 处理每个信令信道的信令(例如,编码,信道化,缩放和加扰)。 所有信令信道的经处理的信令被组合并映射到帧中用于CDMA控制段的时间 - 频率区域。