B60Y2306/15

PREVENTING AUTOMATIC LEVELING DURING BATTERY REPLACEMENT
20220024424 · 2022-01-27 · ·

The invention refers to a method of preventing automatic leveling during battery replacement, and a computer-program thereof. The method of preventing automatic leveling during battery replacement, according to invention, operates for an electric vehicle equipped with a first electronic control unit (100) in charge with battery replacement and a second electronic control unit (200) of suspension system, the respective ECUs (100, 200) communicating by means of an internal bus system. The method includes the following steps: (51) Sending an information from the first ECU to the second ECU that the vehicle is prepared to perform a battery replacement; (52) Once said information is received by the second ECU, triggering a leveling forbid flag to the suspension system and deactivating it; (53) Once said deactivation has been performed, setting a feedback signal to inform that battery replacement can commence; (54) during battery replacement, setting said feedback signal to inform that battery replacement is ongoing; (55) Upon completion of battery replacement, informing the second ECU that the battery replacement has been finished successfully, and allowing the activation of suspension.

Module for detecting a leakage of an arrangement

A module (14) for detecting a leakage, comprising a pressure sensor (8) and a pump (2) for generating pressure, is characterized in that, regarding the object of detecting and/or quantifying a leakage of an arrangement which has a large sealed volume, in a reliable manner with a compact device, the module (14) has a sealable reference volume (11) which can be connected in terms of flow by means of a valve (9) to a tank connection (10) and which can be disconnected therefrom in a flow-tight manner, wherein the pressure inside the reference volume (11) can be detected by the pressure sensor (8), wherein pressure can be generated inside the reference volume (11) by means of the pump (2) and wherein the reference volume (11) can be connected in a flow-conducting manner by means of a shut-off valve (4) via a reference aperture (5) with a defined flow cross section to an atmosphere outlet (1) and can be disconnected therefrom.

Module for Detecting a Leakage of an Arrangement

A module (14) for detecting a leakage, comprising a pressure sensor (8) and a pump (2) for generating pressure, is characterized in that, regarding the object of detecting and/or quantifying a leakage of an arrangement which has a large sealed volume, in a reliable manner with a compact device, the module (14) has a sealable reference volume (11) which can be connected in terms of flow by means of a valve (9) to a tank connection (10) and which can be disconnected therefrom in a flow-tight manner, wherein the pressure inside the reference volume (11) can be detected by the pressure sensor (8), wherein pressure can be generated inside the reference volume (11) by means of the pump (2) and wherein the reference volume (11) can be connected in a flow-conducting manner by means of a shut-off valve (4) via a reference aperture (5) with a defined flow cross section to an atmosphere outlet (1) and can be disconnected therefrom.

Composite cylinder monitoring system
11619353 · 2023-04-04 · ·

Methods, systems, and apparatus for monitoring a cylinder. The system includes a plurality of sensors connected to the cylinder and configured to detect deformation data associated with the cylinder. The system includes a controller communicatively coupled to the plurality of sensors. The controller is configured to determine a damage value based on the detected deformation data when the cylinder endures impact damage. The controller is configured to communicate a notification when the damage value exceeds an impact damage threshold. The system includes a filling controller communicatively coupled to the plurality of sensors. The filling controller is configured to control a valve for filling the cylinder with a fluid. The filling controller is configured to detect damage to the cylinder above a specified threshold as the cylinder is filled with the fluid. The filling controller is configured to automatically perform a safety action when the damage to the cylinder is detected.

Preventing automatic leveling during battery replacement

The invention refers to a method of preventing automatic leveling during battery replacement, and a computer-program thereof. The method of preventing automatic leveling during battery replacement, according to invention, operates for an electric vehicle equipped with a first electronic control unit (100) in charge with battery replacement and a second electronic control unit (200) of suspension system, the respective ECUs (100, 200) communicating by means of an internal bus system. The method includes the following steps: (51) Sending an information from the first ECU to the second ECU that the vehicle is prepared to perform a battery replacement; (52) Once said information is received by the second ECU, triggering a leveling forbid flag to the suspension system and deactivating it; (53) Once said deactivation has been performed, setting a feedback signal to inform that battery replacement can commence; (54) during battery replacement, setting said feedback signal to inform that battery replacement is ongoing; (55) Upon completion of battery replacement, informing the second ECU that the battery replacement has been finished successfully, and allowing the activation of suspension.

AIR FLAP ARRANGEMENT CONFIGURED FOR ONBOARD DIAGNOSIS FOR A MOTOR VEHICLE
20220258597 · 2022-08-18 ·

An air flap arrangement including an air flap carrier with an air outlet opening, where at the air flap carrier there are mounted movably a plurality of air flaps which project into the air outlet opening, where each air flap is adjustable between a blocked operating position and an opened operating position, where each two air flaps directly adjacent in the sequential direction are linked by one linking component for joint movement, where the air flap arrangement having a movement drive which is linked with a driving air flap for the transmission of driving force, where a first operating position out of the blocked operating position and the opened operating position is defined by a first end-stop arrangement which during specified normal operation impedes movement beyond the first operating position of a first control air flap arranged at a distance from the driving air flap for changing the flow-through cross-sectional area of the air outlet opening; only the first control air flap directly and a first group of air flaps, including the driving air flap and the intermediate air flaps which connect the driving air flap and the first control air flap with one another through linking components indirectly, are impeded by the first end-stop arrangement in their movement beyond the first operating position.

Air Damper Device
20220289019 · 2022-09-15 ·

An air flap device for use in a motor vehicle can have an air flap unit comprising a plurality of air flaps pivotally supported about an axis of rotation between a closed position and an open position, wherein the air flaps each have a cover section for covering and uncovering air passages and a fastening section for fixing the air flaps in the air flap device, a drive unit for driving the air flaps, a control unit for controlling an operational capability of the air flaps the control unit having corresponding receiving sections for receiving the fastening sections of the individual air flaps, the air flap device being configured in such a way that a detectable force is generated in the event of a malfunction or non-function of an air flap, wherein the detectable force results from a direct interaction between the fastening section of at least one air flap and the corresponding receiving section of the air flap in the control unit.

COMPOSITE CYLINDER MONITORING SYSTEM
20220316656 · 2022-10-06 ·

Methods, systems, and apparatus for monitoring a cylinder. The system includes a plurality of sensors connected to the cylinder and configured to detect deformation data associated with the cylinder. The system includes a controller communicatively coupled to the plurality of sensors. The controller is configured to determine a damage value based on the detected deformation data when the cylinder endures impact damage. The controller is configured to communicate a notification when the damage value exceeds an impact damage threshold. The system includes a filling controller communicatively coupled to the plurality of sensors. The filling controller is configured to control a valve for filling the cylinder with a fluid. The filling controller is configured to detect damage to the cylinder above a specified threshold as the cylinder is filled with the fluid. The filling controller is configured to automatically perform a safety action when the damage to the cylinder is detected.

Lightweight, single-piece energy absorbing and intrusion resistant battery tray for a vehicle

A single-piece, lightweight, energy-absorbing, and impact resistant battery tray for a battery enclosure for a vehicle includes a lower floor including an impact resisting structure, upwardly sloping side walls integrally formed with the lower floor, and a peripheral flange integrally formed with the upwardly sloping side walls and including an energy absorbing structure.

Active brake confirmation for active transfer cases

An active transfer case is equipped with a multi-plate clutch assembly, a clutch actuation mechanism configured to selectively engage the clutch assembly, a power-operated clutch actuator configured to control actuation of the clutch actuation mechanism, a power-operated actuator brake associated with the power-operated clutch actuator, and a control system configured to control actuation of the clutch actuator and the actuator brake while employing a preemptive check of the functionality of the actuator brake.