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    • 13. 发明申请
    • Device Detection Camera System
    • 设备检测相机系统
    • US20140028816A1
    • 2014-01-30
    • US13558188
    • 2012-07-25
    • Richard T. Brockway, IIIJeffrey S. YouelJohn S. ChenFabrice Barbier
    • Richard T. Brockway, IIIJeffrey S. YouelJohn S. ChenFabrice Barbier
    • H04W88/08H04N7/18
    • H04L12/2803H04L63/00H04L67/125H04L67/22H04N5/23206H04N5/247H04N7/18H04W12/06
    • A camera detects devices, such as other cameras, smart devices, and access points, with which the camera may communicate. The camera may alternate between operating as a wireless station and a wireless access point. The camera may connect to and receive credentials from a device for another device to which it is not connected. In one embodiment, the camera is configured to operate as a wireless access point, and is configured to receive credentials from a smart device operating as a wireless station. The camera may then transfer the credentials to additional cameras, each configured to operate as wireless stations. The camera and additional cameras may connect to a smart device directly or indirectly (for instance, through an access point), and the smart device may change the camera mode of the cameras. The initial modes of the cameras may be preserved and restored by the smart device upon disconnection.
    • 摄像机检测相机可能通信的设备,例如其他摄像机,智能设备和接入点。 相机可以在作为无线站和无线接入点操作之间交替。 摄像机可能连接到设备并从其未连接的另一设备接收凭据。 在一个实施例中,相机被配置为作为无线接入点操作,并且被配置为从作为无线站操作的智能设备接收凭证。 摄像机然后可以将凭证传送到附加摄像机,每个摄像机被配置为作为无线站操作。 相机和附加摄像机可以直接或间接地连接到智能设备(例如,通过接入点),并且智能设备可以改变摄像机的摄像机模式。 在断开连接时,智能设备可以保留和恢复摄像机的初始模式。
    • 17. 发明授权
    • QOS-based multi-protocol uplink access
    • 基于QOS的多协议上行接入
    • US08254316B2
    • 2012-08-28
    • US11610161
    • 2006-12-13
    • John S. Chen
    • John S. Chen
    • H04W4/00
    • H04W74/002H04W48/12H04W74/0833H04W74/0866
    • A method and apparatus for multi-protocol uplink access defines two protocols and maps each to one of a user's access service class (ASC) and quality of service (QoS). A first uplink access protocol type is defined in which a random access channel (RACH) burst is sent and an acquisition indicator channel (AICH) burst is sent, and a channel assignment grant is sent on another downlink channel. A second uplink access protocol type is defined in which a RACH preamble is sent and an AICH burst is sent.
    • 用于多协议上行链路接入的方法和装置定义了两个协议并且将每个协议映射到用户的接入服务类别(ASC)和服务质量(QoS)中的一个。 定义了第一上行链路接入协议类型,其中发送随机接入信道(RACH)突发并且发送采集指示符信道(AICH)突发,并且在另一个下行链路信道上发送信道分配许可。 定义了第二上行链路接入协议类型,其中发送RACH前导码并发送AICH突发。
    • 18. 发明授权
    • Using windows specified object identifiers (OIDs) for an antenna steering algorithm
    • 使用窗口指定的对象标识符(OID)进行天线转向算法
    • US07944890B2
    • 2011-05-17
    • US11419836
    • 2006-05-23
    • John S. ChenInhyok ChaRichard SimeonDaniel P. Steinbach
    • John S. ChenInhyok ChaRichard SimeonDaniel P. Steinbach
    • H01Q1/24
    • H01Q1/2258H01Q25/00
    • A communications device operates in a wireless local area network (WLAN), and includes a processor operating in accordance with an operating system that includes a standardized set of object identifiers (OIDs) associated therewith. An antenna steering algorithm is executed by the processor for generating a driver query. A driver generates an antenna query in response to the driver query. A smart antenna is driven by the driver and generates antenna beams for receiving signals, and generates metrics based upon the received signals. The smart antenna provides to the driver a metric associated with the antenna query. The driver associates the metric received from the smart antenna with one of the object identifiers from the standardized set of object identifiers, and provides the same to the antenna steering algorithm.
    • 通信设备在无线局域网(WLAN)中操作,并且包括根据包括与其相关联的标准对象标识符集合(OID)的操作系统操作的处理器。 由处理器执行天线转向算法以产生驾驶员查询。 驾驶员响应于驾驶员查询产生天线查询。 智能天线由驱动器驱动并产生用于接收信号的天线波束,并且基于接收的信号产生度量。 智能天线向驾驶员提供与天线查询相关联的度量。 驱动器将从智能天线接收的度量与来自标准化的对象标识符集合的对象标识符之一相关联,并将其提供给天线导向算法。
    • 19. 发明申请
    • USING WINDOWS SPECIFIED OBJECT IDENTIFIERS (OIDs) FOR AN ANTENNA STEERING ALGORITHM
    • 使用WINDOWS指定的对象标识符(OID)进行天线转向算法
    • US20070273589A1
    • 2007-11-29
    • US11419836
    • 2006-05-23
    • John S. ChenInhyok ChaRichard SimeonDaniel P. Steinbach
    • John S. ChenInhyok ChaRichard SimeonDaniel P. Steinbach
    • H01Q1/24
    • H01Q1/2258H01Q25/00
    • A communications device operates in a wireless local area network (WLAN), and includes a processor operating in accordance with an operating system that includes a standardized set of object identifiers (OIDs) associated therewith. An antenna steering algorithm is executed by the processor for generating a driver query. A driver generates an antenna query in response to the driver query. A smart antenna is driven by the driver and generates antenna beams for receiving signals, and generates metrics based upon the received signals. The smart antenna provides to the driver a metric associated with the antenna query. The driver associates the metric received from the smart antenna with one of the object identifiers from the standardized set of object identifiers, and provides the same to the antenna steering algorithm.
    • 通信设备在无线局域网(WLAN)中操作,并且包括根据包括与其相关联的标准对象标识符集合(OID)的操作系统操作的处理器。 由处理器执行天线转向算法以产生驾驶员查询。 驾驶员响应于驾驶员查询产生天线查询。 智能天线由驱动器驱动并产生用于接收信号的天线波束,并且基于接收的信号产生度量。 智能天线向驾驶员提供与天线查询相关联的度量。 驱动器将从智能天线接收的度量与来自标准化的对象标识符集合的对象标识符之一相关联,并将其提供给天线导向算法。