B60K28/08

Occupant aware braking system
10471953 · 2019-11-12 · ·

A vehicle control system includes variable maneuvering limits based at least in part on whether the vehicle is carrying cargo (i.e., passengers or other cargo). The system can include a cargo classification system comprising one or more internal sensors, an imager, and an image interpreter. The cargo classification system can determine if the vehicle is carrying cargo and classify the cargo (e.g., passengers or other cargo). Based at least in part on this classification, the vehicle control system can set various vehicle maneuvering limits. When the vehicle is empty, the vehicle control system can maneuver the vehicle at, or near, the actual maneuvering limits for the vehicle (e.g., maximum longitudinal acceleration, braking and lateral acceleration that can be generated by the vehicle). When the vehicle is carrying cargo, the vehicle control system can maneuver the vehicle at a lower threshold to prevent passenger discomfort and/or cargo damage or discomfort.

ELECTRONIC SPEED CONTROL SYSTEM

A smart governor system that intercepts and adjusts throttle commands when certain criteria are met based on vehicle operations and a user-selected transmission mode. The governor, when engaged, reduces a throttle command in order limit engine and/or ground speed.

ELECTRONIC SPEED CONTROL SYSTEM

A smart governor system that intercepts and adjusts throttle commands when certain criteria are met based on vehicle operations and a user-selected transmission mode. The governor, when engaged, reduces a throttle command in order limit engine and/or ground speed.

FUEL SYSTEM CONTROL FOR REFRIGERATION UNIT ENGINE
20190202267 · 2019-07-04 ·

A transport refrigeration system having: a first engine (26) configured to power a refrigeration unit (22); a first fuel tank (330) fluidly connected to the first engine through a first fuel line (332); a first shut off valve (450) located within the first fuel line proximate the first fuel tank; a second shut off valve (72) located within the first fuel line proximate the first engine; a sensor system (80) configured to detect at least one of a crash of the transport refrigeration system, a fuel leak in the first fuel line, and an engine stall in the first engine; and a controller (30) configured to close the first shutoff valve and the second shutoff valve when the sensor system detects at least one of a crash of the transport refrigeration system, a fuel leak in the first fuel line, and an engine stall in the first engine.

FUEL SYSTEM CONTROL FOR REFRIGERATION UNIT ENGINE
20190202267 · 2019-07-04 ·

A transport refrigeration system having: a first engine (26) configured to power a refrigeration unit (22); a first fuel tank (330) fluidly connected to the first engine through a first fuel line (332); a first shut off valve (450) located within the first fuel line proximate the first fuel tank; a second shut off valve (72) located within the first fuel line proximate the first engine; a sensor system (80) configured to detect at least one of a crash of the transport refrigeration system, a fuel leak in the first fuel line, and an engine stall in the first engine; and a controller (30) configured to close the first shutoff valve and the second shutoff valve when the sensor system detects at least one of a crash of the transport refrigeration system, a fuel leak in the first fuel line, and an engine stall in the first engine.

VEHICLE CONTROL APPARATUS AND VEHICLE CONTROL SYSTEM

The present disclosure realizes the transport quality and the transport cost corresponding to, for example, the type of a cargo transported by a vehicle. The present disclosure resides in a vehicle control apparatus for attenuating the vibration of the vehicle by adjusting a parameter that affects a predetermined acceleration so that the predetermined acceleration, which includes at least one of an acceleration in an upward-downward direction of the vehicle, an acceleration in a lateral direction of the vehicle, and an acceleration in a front-back direction of the vehicle, approaches a target acceleration, wherein a required vibration suppression level of the cargo transported by the vehicle is acquired, and the target acceleration is set on the basis of the acquired required vibration suppression level. Then, the control apparatus adjusts the parameter that affects the predetermined acceleration on the basis of the set target acceleration.

System for Controlling a Drive Operation of a Machine
20190176621 · 2019-06-13 · ·

A system for controlling a drive operation of a machine having a payload container. A controller is configured to determine a current payload disposed in the payload container based upon a load sensor and determine a number of completed material loading cycles of a work implement. The controller is further configured to determine an estimated number of material loading cycles required to load the payload container based upon a desired payload, the current payload, and the number of completed material loading cycles, and compare the number of completed material loading cycles to the estimated number of material loading cycles. After the number of completed material loading cycles is one or less than the estimated number of material loading cycles, a shifting operation may begin to shift the transmission into the drive gear.

System for Controlling a Drive Operation of a Machine
20190176621 · 2019-06-13 · ·

A system for controlling a drive operation of a machine having a payload container. A controller is configured to determine a current payload disposed in the payload container based upon a load sensor and determine a number of completed material loading cycles of a work implement. The controller is further configured to determine an estimated number of material loading cycles required to load the payload container based upon a desired payload, the current payload, and the number of completed material loading cycles, and compare the number of completed material loading cycles to the estimated number of material loading cycles. After the number of completed material loading cycles is one or less than the estimated number of material loading cycles, a shifting operation may begin to shift the transmission into the drive gear.

Dynamic safe storage of vehicle content

Systems and methods are provided for dynamically protecting transportable articles in vehicles. A system for dynamically protecting a transportable article in a vehicle may include one or more processors and non-volatile memory storing instructions. The instructions, when executed by the one or more processors, cause the system to determine at least one of a characteristic or a trait of the transportable article; detect, based on sensed data, an emergency condition; select one or more article protection components based on (i) the at least one of the characteristic or the trait of the transportable article, and (ii) the detected emergency condition; and in response to detecting the emergency condition, deploy the selected one or more article protection components to protect the transportable article.

MOTOR VEHICLE WITH CONSPICUITY LAMP CONFIGURED TO INDICATE LOAD
20190143879 · 2019-05-16 ·

A motor vehicle according to an exemplary aspect of the present disclosure includes, among other things, a conspicuity lamp and a controller configured to illuminate the conspicuity lamp in proportion to a load of the motor vehicle. A method is also disclosed.