Secondary card tap system
    1.
    发明授权

    公开(公告)号:US10424037B2

    公开(公告)日:2019-09-24

    申请号:US16268140

    申请日:2019-02-05

    申请人: Cubic Corporation

    摘要: A secondary validator includes a communications interface with a first antenna and a second antenna having a shorter signal range than the first antenna. The validator also includes a processor and a memory having instructions that, when executed by the processor cause the validator to receive, using the first antenna, vehicle information from a first vehicle that is within a signal range of the first antenna. The vehicle information includes route information associated with the first vehicle. The validator provides an indication for a passenger that has exited the first vehicle to check out, reads checkout information from a fare media using the second antenna, detects another vehicle present within a signal range of the first antenna, and provides the checkout information and at least a portion of the transit vehicle information to a primary validator positioned on the another vehicle for subsequent transmission to a transit system back office.

    INSTRUMENTED TRAINING MORTAR SYSTEM
    2.
    发明申请

    公开(公告)号:US20190285384A1

    公开(公告)日:2019-09-19

    申请号:US16430112

    申请日:2019-06-03

    申请人: Cubic Corporation

    摘要: A weapon training system including a magnetic sensor system is described. The magnetic sensor system is insertable into or integrated with a round of an indirect firing weapon and includes at least one magnetic sensor and a microcontroller communicatively coupled to the at least one magnetic sensor. The microcontroller is configured to perform operations including receiving at least one proximity signal from the at least one magnetic sensor indicating a proximity of at least one magnet of at least one charge to the at least one magnetic sensor, determining, based on the at least one proximity signal, that the at least one charge is removably attached to the round, generating an output signal indicating that the at least one charge is removably attached to the round, and wirelessly transmitting the output signal to an electronic device.

    4D BARCODE
    3.
    发明申请

    公开(公告)号:US20170316626A1

    公开(公告)日:2017-11-02

    申请号:US15498899

    申请日:2017-04-27

    申请人: Cubic Corporation

    IPC分类号: G07C9/00 G06K19/06 H04W88/02

    摘要: A mobile device including a communications interface, a memory, a display screen, and a processing unit. The processing unit is configured to retrieve a first key of an asymmetric key pair. A second key of the asymmetric key pair is stored on an access control device. The processing unit is configured to generate a plurality of barcodes. Each of the barcodes includes data that is encrypted using the first key and the current date and time. At least some of the barcodes are distinct from one another. At least one of the barcodes includes access information. The processing unit is configured to sequentially display the barcodes such that only a single one of the barcodes is displayed on the display screen of the mobile device at a single time. The barcodes are read and decrypted by the access control device using the second key and the current date and time.

    FAILSAFE OPERATION FOR UNMANNED GATELINES
    4.
    发明申请
    FAILSAFE OPERATION FOR UNMANNED GATELINES 有权
    失败的游戏机失败的操作

    公开(公告)号:US20150315840A1

    公开(公告)日:2015-11-05

    申请号:US14700403

    申请日:2015-04-30

    申请人: Cubic Corporation

    摘要: Systems and techniques are presented for enabling fail-safe operation of an automatic pedestrian access control gate during a health and safety event. Gateline sensor data is received from at least one gateline sensor. The gateline sensor data indicates that an event concerning health and safety has occurred. An alert is generated in response to receiving the gateline sensor data. The alert is transmitted to a remote monitoring device that is remote from the access control gate. A determination is made that a preset amount of time has elapsed since transmitting the alert. A further determination is made that an acknowledgement of the alert has not been received. Based on determining that the preset amount of time has elapsed and determining that the acknowledgement has not been received, a predefined action is triggered.

    摘要翻译: 提出了系统和技术,用于在健康和安全事件期间实现自动行人通道控制门的故障安全操作。 从至少一个谷歌传感器接收到谷歌传感器数据。 盖特传感器数据表明发生了有关健康和安全的事件。 响应于接收到gateline传感器数据而产生警报。 警报被传送到远离访问控制门的远程监视设备。 确定从发送警报以来经过预设的时间量。 进一步确定尚未接收到警报的确认。 基于确定预设的时间量已经过去并且确定尚未接收到确认,触发预定义的动作。

    Media engagement verification in transit systems

    公开(公告)号:US11640619B2

    公开(公告)日:2023-05-02

    申请号:US16849088

    申请日:2020-04-15

    申请人: Cubic Corporation

    发明人: Gavin Smith

    摘要: Embodiments disclosed herein address these and other concerns by providing for means by which a customer's level of engagement with media can be determined. In particular, media and questions regarding the content of the media may be sent to a ticketing device and provided to the customer. The ticketing device can further obtain the customer's answers to the questions, and send the answers to a server, which can determine a level of engagement can be assessed from the answers and issue a discounted ticket. The amount of the discount may be proportional to the level of engagement.

    Connected and Autonomous Vehicle (CAV) Behavioral Adaptive Driving

    公开(公告)号:US20200062249A1

    公开(公告)日:2020-02-27

    申请号:US16546519

    申请日:2019-08-21

    申请人: Cubic Corporation

    摘要: The CAV may include one or more sensors, a communications interface, a driving control configured to be activated to cause a change in the operation of the CAV, and a processing unit communicatively coupled with the one or more sensors, the communications interface, and the driving control. The processing unit may be configured to cause the CAV to: obtain vehicle data regarding a vehicle using the one or more sensors; obtain, using the vehicle data, risk data via the communications interface, the risk data being indicative of a likelihood of an accident caused by the vehicle; determine a risk value based on the risk data regarding the vehicle, the risk value being indicative of a likelihood that the CAV may be involved in an accident; and responsive to determining the risk value is above a threshold level, activate the driving control to modify the operation of the CAV.

    Failsafe operation for unmanned gatelines
    10.
    发明授权
    Failsafe operation for unmanned gatelines 有权
    无人值守运行的故障安全

    公开(公告)号:US09394740B2

    公开(公告)日:2016-07-19

    申请号:US14700403

    申请日:2015-04-30

    申请人: Cubic Corporation

    摘要: Systems and techniques are presented for enabling fail-safe operation of an automatic pedestrian access control gate during a health and safety event. Gateline sensor data is received from at least one gateline sensor. The gateline sensor data indicates that an event concerning health and safety has occurred. An alert is generated in response to receiving the gateline sensor data. The alert is transmitted to a remote monitoring device that is remote from the access control gate. A determination is made that a preset amount of time has elapsed since transmitting the alert. A further determination is made that an acknowledgement of the alert has not been received. Based on determining that the preset amount of time has elapsed and determining that the acknowledgement has not been received, a predefined action is triggered.

    摘要翻译: 提出了系统和技术,用于在健康和安全事件期间实现自动行人通道控制门的故障安全操作。 从至少一个谷歌传感器接收到谷歌传感器数据。 盖特传感器数据表明发生了有关健康和安全的事件。 响应于接收到gateline传感器数据而产生警报。 警报被传送到远离访问控制门的远程监视设备。 确定从发送警报以来经过预设的时间量。 进一步确定尚未接收到警报的确认。 基于确定预设的时间量已经过去并且确定尚未接收到确认,触发预定义的动作。