Suspending Voice Guidance During Route Navigation

    公开(公告)号:US20170102244A1

    公开(公告)日:2017-04-13

    申请号:US14879270

    申请日:2015-10-09

    CPC classification number: G01C21/3629 G01C21/3641

    Abstract: Concepts and technologies are disclosed herein for suspending voice guidance during route navigation. A processor that executes a navigation system interface application can detect a deviation from a route between an origin and a destination. The processor can obtain contextual data including a geographic location and a vector. The processor can set a first value of a point-of-interest parameter that indicates whether the geographic location and the vector imply a visit to an expected stop, a second value of a road-type parameter that indicates a type of a current road segment associated with the geographic location, and a third value of a route-distance parameter based on a distance between the geographic location and a nearest point along the route. The processor can determine if voice guidance should be suspended based on the first value, the second value, and the third value.

    Ultrasonic Mesh Network System
    97.
    发明申请
    Ultrasonic Mesh Network System 审中-公开
    超声波网状网络系统

    公开(公告)号:US20160353518A1

    公开(公告)日:2016-12-01

    申请号:US14725389

    申请日:2015-05-29

    CPC classification number: H04W84/18 H04B11/00 H04L67/12 H04W4/70

    Abstract: Concepts and technologies are disclosed herein for an ultrasonic mesh network system. According to one aspect, an ultrasonic mesh network system can include a plurality of nodes deployed within an environment. The plurality of nodes can include first and second nodes. The first node can include a first ultrasonic transceiver and a sensor. The second node can include a second ultrasonic transceiver. The first node can detect, via the sensor, one or more characteristics of the environment. In response, the first node can generate a message that includes the characteristic(s) of the environment. The first node also can transmit, via the first ultrasonic transceiver, the message into the environment. The second node can receive, via the second ultrasonic transceiver, the message from the first ultrasonic transceiver on the ultrasonic frequency. The second node can retransmit, via the second ultrasonic transceiver, the message received from the first ultrasonic transceiver.

    Abstract translation: 本文中公开了用于超声波网状网络系统的概念和技术。 根据一个方面,超声波网状网络系统可以包括在环境内部署的多个节点。 多个节点可以包括第一和第二节点。 第一节点可以包括第一超声波收发器和传感器。 第二节点可以包括第二超声收发器。 第一个节点可以通过传感器检测环境的一个或多个特性。 作为响应,第一节点可以生成包括环境特征的消息。 第一节点还可以经由第一超声波收发器将消息发送到环境中。 第二节点可以经由第二超声收发器从超声频率上的第一超声收发器接收消息。 第二节点可以经由第二超声收发器重传从第一超声收发器接收的消息。

    CONTROLLING DATA RATE BASED ON DOMAIN AND RADIO USAGE HISTORY

    公开(公告)号:US20220321486A1

    公开(公告)日:2022-10-06

    申请号:US17807879

    申请日:2022-06-21

    Abstract: A domain and a mobile device may exchange data via a radio access node included in a mobile network. During a time of peak demand, a data load level of the radio access node may exceed a threshold. To accommodate the peak demand, historical types and volumes of data may be used to manage a data rate related to data associated with the domain. Based on the historical information, the data rate for a mobile device, a radio access node, a range of time, or a data type may be controlled. The data rate may be managed by a network gateway, such as a gateway included in the mobile network.

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