SYSTEMS AND METHODS FOR IMPLEMENTING RELATIVE TAGS IN CONNECTION WITH USE OF AUTONOMOUS VEHICLES

    公开(公告)号:US20170351990A1

    公开(公告)日:2017-12-07

    申请号:US15604605

    申请日:2017-05-24

    CPC classification number: G06Q10/06316 G06Q50/01 G06Q2240/00

    Abstract: A system for serving a shared-ride user, including a non-transitory storage component and a hardware-based processing unit performing module functions. The storage includes a user-input-interface module that receives, from a machine interface, user-input data regarding a user/co-passenger interaction. The storage includes a ride-sharing module determining, based on input data, an identity or account for the co-passenger, and an output module performing an action based on the identity or account. In another aspect, the storage includes a commerce module determining, based on the input data, a service or product indicated in the interaction and the output action is based on the service or product. In another aspect, the storage includes a social-media module accessing a social-media resource to, using the input data, determine an identity or account of the co-passenger, a product or service indicated by the co-passenger or the user in the interaction, or a schedule of the co-passenger.

    VERIFYING A USER WITH BIOMETRIC DATA
    53.
    发明申请
    VERIFYING A USER WITH BIOMETRIC DATA 审中-公开
    验证具有生物量数据的用户

    公开(公告)号:US20160300050A1

    公开(公告)日:2016-10-13

    申请号:US14288669

    申请日:2014-05-28

    CPC classification number: G06F21/32 G10L17/00 H04L63/0861 H04W12/06 H04W12/08

    Abstract: A system and method of verifying a biometric variable of a handheld wireless device user includes: receiving at a wireless device a biometric variable measured using a handheld wireless device; detecting the biometric variable at the wireless device in response to receiving the biometric variable measured using the handheld wireless device; performing feature recognition at the wireless device on the detected biometric variable; comparing the feature recognition performed at the wireless device with the biometric variable measured using the handheld wireless device; permitting access to one or more features available at the wireless device or the handheld wireless device when the comparison is within a predetermined range of values; and denying access to the wireless device or the handheld device when the comparison is outside of the predetermined range of values.

    Abstract translation: 一种用于验证手持无线设备用户的生物测定变量的系统和方法包括:在无线设备处接收使用手持无线设备测量的生物测定变量; 响应于接收使用所述手持无线设备测量的生物测定变量来检测所述无线设备处的生物特征变量; 在检测到的生物特征变量上对无线设备执行特征识别; 将在无线设备处执行的特征识别与使用手持无线设备测量的生物测定变量进行比较; 当比较在预定值范围内时,允许访问在无线设备或手持无线设备处可用的一个或多个特征; 并且当所述比较超出所述预定值范围时,拒绝对所述无线设备或所述手持设备的访问。

    LANGUAGE DETECTION SYSTEM FOR A VEHICLE

    公开(公告)号:US20250131912A1

    公开(公告)日:2025-04-24

    申请号:US18492436

    申请日:2023-10-23

    Abstract: A language detection system includes data processing hardware and memory hardware in communication with the data processing hardware. The memory hardware stores instructions that when executed on the data processing hardware cause the data processing hardware to perform operations. The operations include issuing a vehicle prompt and determining responsiveness to the issued vehicle prompt, the responsiveness including an execution response and anon-responsive response. A language monitoring module is activated in response to the non-responsive response of the determined responsiveness and a spoken language is monitored within an interior cabin of a vehicle. A driver state is estimated based on the determined language, and a translation function is executed using a translation module in response to the estimated driver state.

    FINE-GRAINED IN-VEHICLE DYNAMIC NOISE PATTERN LEARNING FOR VOICE APPLICATIONS

    公开(公告)号:US20250029598A1

    公开(公告)日:2025-01-23

    申请号:US18355685

    申请日:2023-07-20

    Abstract: Aspects of fine-grained, dynamic noise pattern learning for voice applications include a vehicle, the vehicle having a body with a cabin. Embedded within the vehicle is a processor coupled to memory. The processor may be configured to embed multimodal data for environment and vehicle data. The embedded acoustic data may be from microphone-captured data in the cabin. The processor may concatenate the embeddings to form a latent vector characterizing the embeddings to thereby estimate a mean and variance of the latent vector using an adaptive time window. The processor may identify a noise type using the mean and variance of the latent vector, the noise type identification being fine-grained via the adaptive time window to accurately emulate vehicle noise.

    VOICEPRINT DRIFT DETECTION AND UPDATE
    58.
    发明公开

    公开(公告)号:US20240355332A1

    公开(公告)日:2024-10-24

    申请号:US18303754

    申请日:2023-04-20

    CPC classification number: G10L17/04 G10L17/06 G10L17/22

    Abstract: A voiceprint module for in-vehicle voiceprint drift detection. The module may be configured for determining an archived voiceprint for an operator of a vehicle, generating a first real-time voiceprint according to in-vehicle utterances of the operator made while operating the vehicle, generating a first voiceprint deviation to quantify statistical distance between one or more probabilistic density functions associated with each of the first real-time and archived voiceprints, and updating one or more vocal characteristics of the archived voiceprint to generate an updated voiceprint in response to the first voiceprint deviation surpassing an update threshold.

    AUGMENTED IN-VEHICLE COMMUNICATION
    59.
    发明公开

    公开(公告)号:US20240112692A1

    公开(公告)日:2024-04-04

    申请号:US17959690

    申请日:2022-10-04

    Abstract: A communication augmentation system includes a camera, a transceiver and a computer. The camera is operation to record an image of users. The transceiver is operational to receive inbound messages from wireless devices. The inbound messages include an input content. The computer is operational to store registrations of the users, determine user locations where the users are located in response to facial profiles relative to the image, determine device locations where the wireless devices are located based on the inbound messages, associate the wireless devices with the users based on the user locations and the device locations, determine destinations of the inbound messages based on a comparison of input content to the identifiers, and transfer the input content and the destinations to the transceiver. The transceiver is further operational to transmit the input content in a plurality of outbound messages to the wireless devices based on the destinations.

    SYSTEM AND METHOD FOR A VOICE-ACTIVATED USER SUPPORT SYSTEM

    公开(公告)号:US20240092292A1

    公开(公告)日:2024-03-21

    申请号:US17946477

    申请日:2022-09-16

    Abstract: The concepts include a user support system in the form of a microphone, a visual display arranged in a vehicle cabin, and a controller. The controller includes an instruction set that is executable to receive, via the microphone, a voice-based request from a user, and employ a virtual assistant to determine a user interaction in real time and to determine a specific intent for the voice-based request, including capturing metadata. A user interaction routine determines a user interaction parameter associated with the virtual assistant based upon the voice-based request from the user. A user sentiment analysis routine determines a user satisfaction parameter associated with the virtual assistant based upon the voice-based request from the user. The controller responds in real-time to the voice-based request based upon the user satisfaction parameter and the user interaction parameter that are associated with the virtual assistant.

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