B60L53/50

ELECTRIFIED MILITARY VEHICLE

A driveline includes a driver configured to be positioned between an engine and a transmission. The driver includes a housing, a motor/generator, and a clutch. The housing includes an engine mount configured to couple to the engine and a backing plate configured to couple to the transmission. The motor/generator is disposed within the housing and configured to couple to an input of the transmission. The clutch is disposed within the housing and coupled to the motor/generator. The clutch is configured to selectively couple an output of the engine to the motor/generator. The clutch is configured to be spring-biased into engagement with the engine and pneumatically disengaged by an air supply selectively provided thereto.

ELECTRIFIED MILITARY VEHICLE

A driveline includes a driver configured to be positioned between an engine and a transmission. The driver includes a housing, a motor/generator, and a clutch. The housing includes an engine mount configured to couple to the engine and a backing plate configured to couple to the transmission. The motor/generator is disposed within the housing and configured to couple to an input of the transmission. The clutch is disposed within the housing and coupled to the motor/generator. The clutch is configured to selectively couple an output of the engine to the motor/generator. The clutch is configured to be spring-biased into engagement with the engine and pneumatically disengaged by an air supply selectively provided thereto.

ELECTRIC VEHICLE PORT

A port for electric vehicles includes an off-loading zone for off-loading one or more passengers from an electric vehicle; a loading zone for loading one or more passengers onto the electric vehicle; and a charging zone for charging the electric vehicle while the electric vehicle is moving from the off-loading zone to the loading zone.

Method for Increasing Safety During Charging of a Vehicle Battery
20230011299 · 2023-01-12 ·

A computer-implemented method for increasing safety during charging of a vehicle battery of a vehicle by a charging station, the method comprising the steps of calculating a forecast value for a maximum safe charging current by the controller of the vehicle based on sensor data generated by sensors of the vehicle and adjusting the charging current provided by the charging station in response to the forecast value of a maximum safe charging current.

METHOD FOR OPERATING AN ELECTRICALLY OPERATED OR ALSO ELECTRICALLY OPERABLE MOTOR VEHICLE AND MOTOR VEHICLE
20180001788 · 2018-01-04 · ·

A method for operating an electrically operated or also electrically operable motor vehicle provided with a rechargeable electric energy storage device associated with the drive motor of the motor vehicle. A target charging state is determined for the energy storage device and an operating strategy is determined for a route that is calculated, entered or predicted for the next trip, by which recuperative deceleration is enabled with a specifiable minimum amount for deceleration processes occurring along the route. A total mass of the motor vehicle, including optionally a trailer connected to the motor vehicle, deviating from an input normal value and an air resistance of the motor vehicle deviating from a predetermined normal value are taken into account.

BATTERY CHARGING SYSTEM AND BATTERY CHARGING METHOD FOR ELECTRICALLY DRIVEN VEHICLE
20180001774 · 2018-01-04 ·

In a case where an external charging start time is set in an external charging timer when a charging plug is connected to a charging connector, a charging controller is configured to perform standby setting of external charging before the external charging start time and transits to a pause state. The charging controller is intermittently activated during a timer charging setting period from a pause period start time when transition is made to the pause state to the external charging start time, and when a battery temperature at the time of activation of the charging controller is equal to or lower than a predetermined temperature, execute a temperature increase mode in which a heater is operated to increase the temperature of a main battery.

Fast Charging System for Electric Vehicles
20180009324 · 2018-01-11 ·

The embodiments described and claimed herein are apparatus, systems, and methods for charging an electric vehicle at a stationary service station. In one embodiment, the service station includes a power generation component including at least one fuel cell, a fuel supply component for supplying fuel to the power generation component, a charging component including at least one customer charging station, and a control component for controlling and monitoring the other components and for providing accounting and billing functions.

HYBRID ELECTRIC VEHICLE MANAGEMENT DEVICE, HYBRID ELECTRIC VEHICLE MANAGEMENT METHOD, AND HYBRID ELECTRIC VEHICLE MANAGEMENT SYSTEM
20230234465 · 2023-07-27 · ·

A hybrid electric vehicle management device configured to manage a hybrid electric vehicle that includes an internal combustion engine and that is configured to perform either or both of external charging and external discharging, includes a processor. The processor is configured to acquire vehicle information of a first hybrid electric vehicle and vehicle information of a second hybrid electric vehicle. The vehicle information includes information on the amount of fuel remaining in the hybrid electric vehicle. The processor selects, based on the vehicle information, the first hybrid electric vehicle as a hybrid electric vehicle to which either or both of the external charging and the external discharging is to he requested. The amount of fuel remaining in the first hybrid electric vehicle is larger than the amount of fuel remaining in the second hybrid electric vehicle.

HYBRID ELECTRIC VEHICLE MANAGEMENT DEVICE, HYBRID ELECTRIC VEHICLE MANAGEMENT METHOD, AND HYBRID ELECTRIC VEHICLE MANAGEMENT SYSTEM
20230234465 · 2023-07-27 · ·

A hybrid electric vehicle management device configured to manage a hybrid electric vehicle that includes an internal combustion engine and that is configured to perform either or both of external charging and external discharging, includes a processor. The processor is configured to acquire vehicle information of a first hybrid electric vehicle and vehicle information of a second hybrid electric vehicle. The vehicle information includes information on the amount of fuel remaining in the hybrid electric vehicle. The processor selects, based on the vehicle information, the first hybrid electric vehicle as a hybrid electric vehicle to which either or both of the external charging and the external discharging is to he requested. The amount of fuel remaining in the first hybrid electric vehicle is larger than the amount of fuel remaining in the second hybrid electric vehicle.

Hybrid Power Management System and Method for Delivering Power in a Transport Vehicle
20230022717 · 2023-01-26 ·

Disclosed is a system configured to deliver power to a load in a transport vehicle, the system having: (a) a battery; (b) a super capacitor bank; (c) a bidirectional DC/DC converter configured to transfer power to/from the super capacitors in order to absorb/supply power from/to the load, and configured to transfer power between the super capacitors and the battery and/or the load in order to charge the super capacitor from the battery or load or charge the battery/load from the super capacitors in a controlled way (d) a hybrid controller, the hybrid controller configured to identify when pulsed power is required to/from the load and instructing the DC/DC converter to supply/absorb power to/from the load from/to the super capacitor bank and to identify when power needs to be transferred between the super capacitor and the battery/load to charge or discharge the battery/load and/or super capacitor.