Patent classifications
H04W52/322
Methods and systems for navigating to a designated shipping location as part of a multi-leg logistics operations using a wireless node network and multiple node-enabled autonomous transport vehicles in the network
Methods and systems are described that use multiple node-enabled autonomous transport vehicles on a single logistics operation having multiple legs performed by different transport vehicles with enhanced transfer of the item being shipped between such vehicles. A first or primary master node on a first node-enabled autonomous transport vehicle detects a signal from the second master node on a second transport vehicle, navigates to the second transport vehicle based on the detected signal and its direction, and may dock in a transfer configuration. At least one item (or a container with an item) is transferred as payload from the first to the second vehicle using one or more object manipulation systems on respective ones of the first and second transport vehicles. The second vehicle then detects a signal from another node, and navigates to that node as another leg in the multi-leg operation.
Power adaptation for synchronization signal blocks
Methods, systems, and devices for wireless communication are described. A user equipment (UE) may receive an indication of a transmission power for a synchronization signal block (SSB) transmission by a base station, the indicated transmission power different than a default transmission power for SSB transmissions by the base station. The UE may determine a received power with which the SSB transmission is received at the UE. The UE may receive one or more downlink transmissions from the base station based at least in part on the received power for the SSB transmission and a difference between the default transmission power and the indicated transmission power for the SSB transmission.
Low-power modes for a vehicle telematics device
Methods and systems of enabling a storage mode on a telematics device coupled to a vehicle are provided. One method includes detecting a first event or receiving a command for enabling a storage mode, entering the storage mode in which the telematics device is in a sleep mode in response to receiving the first event or the command, and exiting the storage mode in response to detecting a second event.
METHODS OF PERFORMING A DISPATCHED STORE-TO-CONSUMER LOGISTICS OPERATION FOR AN ORDERED ITEM AND USING A MODULAR AUTONOMOUS BOT APPARATUS ASSEMBLY AND A DISPATCH SERVER
Methods are described that perform dispatched store-to-consumer logistics operations for an ordered item using a modular autonomous bot apparatus assembly and a dispatch server. A dispatch command is received from the dispatch server. The different modular components of the bot assembly are verified to be compatible with the dispatched operation and the ordered item is received in a payload area of a modular cargo storage system. The bot assembly autonomously moves from an origin location to a destination location and notifies the delivery recipient of the approach delivery. When delivery recipient authentication input is received that correlates to the authentication information, selective access is provided to the ordered item within the cargo storage system at the destination location. The bot apparatus monitors unloading, and autonomously moves back to the origin location after the ordered item is detected as removed from the cargo storage system.
Modular multiple mobility base assembly apparatus for transporting an item being shipped
A modular multiple mobility base assembly apparatus is described for transporting an item being shipped having a base adapter plate and two cooperating and coordinating modular mobility bases that are each coupled to the bottom of the base adapter plate and collectively support the base adapter plate. One of the modular mobility bases operations a master autonomous mobile vehicle, while the other operates as a slave autonomous mobile vehicle that receives propulsion and steering control signals from the master while providing feedback sensor data to the master for use in coordinated and cooperative movement of the assembly apparatus. Each of the modular mobility bases also including respective wireless transceivers through which at least the control signals and sensor data are provided between mobility base units.
Methods of performing an inventory management related dispatched logistics operation for an inventory item and using a modular autonomous bot apparatus assembly and a dispatch server
Methods are described that perform a dispatched inventory operation related to an inventory item within a modular autonomous bot apparatus assembly and a dispatch server. modular mobile autonomy control module (MAM) receives an inventory dispatch command from the dispatch server and a modular cargo storage system (CSS) receives the inventory item at an inventory hub location. The MAM autonomously causes the assembly to then move to a remote business facility as a destination location, receive authentication input from an authorized delivery recipient, coordinates with the CSS to provide selective access to the inventory item, detects when the inventory item has been removed from within the CSS, and autonomously causes the assembly to move on a return route back to the inventory hub location after removal of the inventory item.
Methods of performing a dispatched store-to-consumer logistics operation for an ordered item and using a modular autonomous bot apparatus assembly and a dispatch server
Methods are described that perform dispatched store-to-consumer logistics operations for an ordered item using a modular autonomous bot apparatus assembly and a dispatch server. A dispatch command is received from the dispatch server. The different modular components of the bot assembly are verified to be compatible with the dispatched operation and the ordered item is received in a payload area of a modular cargo storage system. The bot assembly autonomously moves from an origin location to a destination location and notifies the delivery recipient of the approach delivery. When delivery recipient authentication input is received that correlates to the authentication information, selective access is provided to the ordered item within the cargo storage system at the destination location. The bot apparatus monitors unloading, and autonomously moves back to the origin location after the ordered item is detected as removed from the cargo storage system.
Modular auxiliary power module for a modular autonomous bot apparatus that transports an item being shipped
A modular auxiliary power module is described for a modular autonomous bot apparatus that transports an item being shipped. The modular auxiliary power module includes a base adapter platform, a cargo door, an auxiliary power source, and an output power outlet disposed on the base adapter platform as part of a modular component electronics interface. A top side of the base adapter platform has a cargo support area configured to support the item being shipped. Interlocking alignment interfaces (such as channels or latches) are on the top and bottom of the platform. The cargo door is movably attached to and extending from an edge of the base adapter platform, and the output power outlet is coupled to the auxiliary power source and provides access to power for other components of the modular autonomous bot apparatus from the auxiliary power source.
METHODS OF PERFORMING A DISPATCHED MEDICAL LOGISTICS OPERATION RELATED TO A DIAGNOSIS KIT FOR TREATING A PATIENT AND USING A MODULAR AUTONOMOUS BOT APPARATUS ASSEMBLY AND A DISPATCH SERVER
Methods perform one or more dispatched medical logistics operations using a modular autonomous bot apparatus assembly and a dispatch server where the operations are related to a diagnosis kit for treating a patient. The MAM of the bot receives a dispatch command, verifies compatibility of the bot assembly with the dispatched operation(s), receives a diagnosis kit in the CSS, has the MAM autonomously causing the MB to move to a destination location while notifying the authorized delivery recipient for the diagnosis kit of the approaching delivery. With appropriate authentication input received, the MAM coordinates with the CSS to provide access to the kit, monitor unloading of the kit, provide instructional information on use of the kit, and autonomously cause the MB to return to the original location with a return item related to the diagnosis kit with notification to personnel at the medical entity about the return item.
Method and apparatus for indicating transmitting power difference, and method and apparatus for compensating power
The present disclosure relates to a method and an apparatus for indicating a transmitting power difference, a method and an apparatus for compensating power, a base station, a user equipment, and a computer-readable storage medium. The method of indicating a transmitting power difference includes: in response to that a transmitting power difference between a synchronization signal block (SSB) and a physical downlink control channel (PDCCH) of remaining minimum system information (RMSI) corresponding to the SSB is greater than a preset threshold, setting, by a base station, primary synchronization signal (PSS) transmitting powers of a preset number of successive SSBs in a preset fixed pattern, where the fixed pattern indicates that the transmitting power difference is greater than the preset threshold; and transmitting the SSB to a user equipment (UE) in a beam scanning manner.