摘要:
Featured is a data storage back-up system for replication, mirroring and/or backing-up data including one or more first and second data storage devices that embody iSCSI, FC or alike principals and that are operably coupled to each other preferably via a WAN. The first data storage device is configured and arranged so there are two writes of data, one write to a persistent storage device from which reads are done and another write to a SAPS device wherein the data is saved using log-structured file system (LSF) techniques. After saving data to the First storage device, the data logs in the SAPS device are communicated to the second data storage device whereat a de-staging process is conducted so as to de-stage the data logs and write the de-staged data to a persistent storage device in the second data storage device.
摘要:
Featured is a data storage back-up system for replication, mirroring and/or backing-up data including one or more first and second data storage devices that embody iSCSI, FC or alike principals and that are operably coupled to each other preferably via a WAN. The first data storage device is configured and arranged so there are two writes of data, one write to a persistent storage device from which reads are done and another write to a SAPS device wherein the data is saved using log-structured file system (LSF) techniques. After saving data to the First storage device, the data logs in the SAPS device are communicated to the second data storage device whereat a de-staging process is conducted so as to de-stage the data logs and write the de-staged data to a persistent storage device in the second data storage device.
摘要:
FIG. 1 is a front perspective view of a pet coat showing my new design. FIG. 2 is a front view of a pet coat. FIG. 3 is a rear view of a pet coat. FIG. 4 is a left side view of a pet coat. FIG. 5 is a right side view of a pet coat. FIG. 6 is a top view of a pet coat; and, FIG. 7 is a bottom view of a pet coat. The broken lines depict stitching lines and form part of the claimed design.
摘要:
The invention discloses a house structure with expandable function, comprising a house body (20), wherein an elevator shaft (21) is provided in the house body (20), and a carrying elevator (22) is provided in the elevator shaft (21); a multifunctional balcony (23) is further provided on both sides of the elevator shaft (21), and the multifunctional balcony (23) and the elevator shaft (21) are connected via a landing door (24); the car of the carrying elevator (22) is provided with a car front door, a car left door and a car right door, respectively; a multifunctional cabin (1) can be detachably connected to an automatic carrying system (35) capable of autonomous driving. The house structure provided by the invention can take into account the owner's demand for various aspects of the house, and improves the functionality of the house.
摘要:
An automatic charging system for intelligent driving electric vehicles and charging method thereof, comprising a vehicle-mounted terminal and a charging terminal; the vehicle-mounted terminal comprises a battery module, which is communicatively connected to a battery management system, and the battery module is electrically connected to a power receiving controller; the battery management system is connected to a vehicle control unit via a vehicle-mounted communication unit, the vehicle control unit is connected to an unmanned system, and the power receiving controller is electrically connected to a receiving coil; the charging terminal comprises a charging management system, which is respectively connected to the vehicle-mounted communication unit and a charging communication unit that is communicatively connected to a power transmitting controller, and the power transmitting controller is electrically connected to a transmitting coil. The invention realizes the flexibility and rapidization of charging, improves charging efficiency, and saves charging pile resource.
摘要:
The invention discloses an unmanned vending vehicle system, comprising an order module and a remote scheduling module, wherein both the order module and the remote scheduling module are communicated and connected to the vehicle-mounted terminal via a server; the vehicle-mounted terminal comprises a vehicle management system disposed on the chassis and a commodity management system disposed on the vehicle body, and the chassis is detachably connected to the vehicle body; the vehicle management system comprises an automatic driving module; the commodity management system comprises a commodity throughput module and an access module; the automatic driving module comprises an IPC (Industrial Personal Computer), a laser radar; and a GPS module. The invention has the characteristics of saving labor power, improving freight efficiency, enhancing expansibility and saving resources.
摘要:
The invention disclosures an unmanned-drive mobile multifunctional vehicle system and using method thereof, comprising a server (1) connected with a remote scheduling module (2) and vehicle terminal respectively; the vehicle terminal comprises chassis and vehicle body, the chassis and the vehicle body are detachably connected; the chassis is provided with a chassis management system (3), the vehicle body is provided with a vehicle body separation system (4); the chassis management system (3) comprises an autopilot module (31) and a chassis wireless communication module (32); the vehicle body separation system (4) comprises a separation execution module (41) and a vehicle body wireless communication module (42); the autopilot module (31) comprises an Industrial Personal Computer (311), a laser radar (312), and a GPS module (313). The invention has advantages of saving manpower, good expansibility and saving resources.
摘要:
An automatic charging system for intelligent driving electric vehicles and charging method thereof, comprising a vehicle-mounted terminal and a charging terminal; the vehicle-mounted terminal comprises a battery module, which is communicatively connected to a battery management system, and the battery module is electrically connected to a power receiving controller; the battery management system is connected to a vehicle control unit via a vehicle-mounted communication unit, the vehicle control unit is connected to an unmanned system, and the power receiving controller is electrically connected to a receiving coil; the charging terminal comprises a charging management system, which is respectively connected to the vehicle-mounted communication unit and a charging communication unit that is communicatively connected to a power transmitting controller, and the power transmitting controller is electrically connected to a transmitting coil. The invention realizes the flexibility and rapidization of charging, improves charging efficiency, and saves charging pile resource.
摘要:
The utility model relates to a riding helmet with automatic brake detection and steering indication functions, which consists of the helmet body and the left steering lamp and right steering lamp installed on its front and rear sides, wherein, the two lamps are electrically connected with the control module, the control module is designed with a wireless receiving module that is linked up with the wireless receiving module mounted on the bicycle, the wireless remote control module is also electrically connected with brake detection device and manual control device, and the steering lamps can work according to the signals of the brake detection device and manual control device.
摘要:
The present invention relates to an intelligent safety helmet with front play of rearview consisting of the helmet body and several ventilation holes designed on it. The helmet body is set in the back with a rearview camera electrically connected with the intelligent hardware set in its front. The intelligent hardware consists of a removable main bracket installed on one side of the helmet body, and the main bracket is installed with an optoelectronic device and a front-facing camera in the front via a rocker arm module, so that the user can use the front-facing camera to take pictures and store them in the memory or activate the rearview camera and project the image onto the optoelectronic device for view of rear conditions by the user. The user can use a transmissive optical module set in front of the eyes to play the pictures taken by the back-facing camera.