B60L9/16

Power system and associated system

A power system is disclosed. The power system includes a first power generating unit. The first power generating unit includes a first power converting subunit and a first control unit coupled to the first power converting subunit, where the first control unit is configured to regulate a voltage of the first power generating unit. The power system further includes a second power generating unit coupled to the first power generating unit and a load, where the second power generating unit includes a second power converting subunit and a second control unit coupled to the second power converting subunit, wherein the second control unit is configured to control a current of the second power generating unit to share a quantity of electrical output current flowing through the load among the first and second power generating units.

LINEAR TRANSPORT SYSTEM, METHOD FOR OPERATING A LINEAR TRANSPORT SYSTEM, AND CONTACTLESSLY TRANSMITTING POWER AND DATA SYSTEM
20210046826 · 2021-02-18 ·

A linear transport system includes a movable carriage, a guide rail for guiding the carriage, and a linear motor for driving the carriage along the guide rail. A system is provided for contactless power and data transmission; e.g., where power and data are each sent inductively via separate coils to the carriage of the linear transport system and/or received by the carriage of a linear transport system. A method of operating such a linear transport system and a contactless power and data transmission system are also included.

LINEAR TRANSPORT SYSTEM, METHOD FOR OPERATING A LINEAR TRANSPORT SYSTEM, AND CONTACTLESSLY TRANSMITTING POWER AND DATA SYSTEM
20210046826 · 2021-02-18 ·

A linear transport system includes a movable carriage, a guide rail for guiding the carriage, and a linear motor for driving the carriage along the guide rail. A system is provided for contactless power and data transmission; e.g., where power and data are each sent inductively via separate coils to the carriage of the linear transport system and/or received by the carriage of a linear transport system. A method of operating such a linear transport system and a contactless power and data transmission system are also included.

AC ELECTRIC ROLLING STOCK CONTROLLER

An AC electric rolling stock controller includes a comparator that compares an intermediate link voltage V.sub.EFC generated at a smoothing capacitor with a setting value A, a comparator that compares the intermediate link voltage V.sub.EFC with a setting value B less than the setting value A, and a delayer that delays an output of the comparator in a case in which the output of the comparator is significant. It is determined that the initial charging of the smoothing capacitor is complete in a case in which at least one of an output of the comparator and an output of the delayer is significant.

AC ELECTRIC ROLLING STOCK CONTROLLER

An AC electric rolling stock controller includes a comparator that compares an intermediate link voltage V.sub.EFC generated at a smoothing capacitor with a setting value A, a comparator that compares the intermediate link voltage V.sub.EFC with a setting value B less than the setting value A, and a delayer that delays an output of the comparator in a case in which the output of the comparator is significant. It is determined that the initial charging of the smoothing capacitor is complete in a case in which at least one of an output of the comparator and an output of the delayer is significant.

POWER CONVERSION DEVICE AND ELECTRIC RAILROAD VEHICLE EQUIPPED WITH POWER CONVERSION DEVICE

A power conversion device achieves size reduction and reliability by reducing the number of components of the system. The power conversion device has a semiconductor module of a half-bridge configuration in which two semiconductor elements are arranged in series. The semiconductor module has a cuboidal shape and has, along a longitudinal direction thereof, a positive pole terminal, a negative pole terminal, and terminals for inputting or outputting alternating current or for forming a single phase of the power conversion device. In the vertical direction corresponding to a widthwise direction of the cuboid, a plurality of the semiconductor modules are arranged vertically, forming a plurality of phases of the power conversion device. The semiconductor modules of the plurality of phases are installed in contact with a cooling unit, and one or more capacitors are disposed so as to face the cooling unit across the semiconductor modules of the plurality of phases.

ELECTRIC DRIVE SYSTEM, POWER TRAIN, VEHICLE, AND METHOD OF OPERATING AN ELECTRIC DRIVE SYSTEM
20240001773 · 2024-01-04 ·

An electric drive system for a vehicle, such as a rail vehicle, has a plurality of different drive motors. The motors include at least one permanently excited motor as a drive and at least one further motor selected from the group of asynchronous motor and reluctance motor as a drive motor. The permanently excited motor is powered by an inverter whose power semiconductor has a greater band gap than silicon, and the further motor which is selected from the group of asynchronous motor and reluctance motor is powered by an Si inverter.

ELECTRIC DRIVE SYSTEM, POWER TRAIN, VEHICLE, AND METHOD OF OPERATING AN ELECTRIC DRIVE SYSTEM
20240001773 · 2024-01-04 ·

An electric drive system for a vehicle, such as a rail vehicle, has a plurality of different drive motors. The motors include at least one permanently excited motor as a drive and at least one further motor selected from the group of asynchronous motor and reluctance motor as a drive motor. The permanently excited motor is powered by an inverter whose power semiconductor has a greater band gap than silicon, and the further motor which is selected from the group of asynchronous motor and reluctance motor is powered by an Si inverter.

ELECTRIC VEHICLE CONTROL DEVICE

An electric vehicle control device includes a plurality of drive control systems that controls travelling of an electric vehicle. Each of the drive control systems includes an induction motor, an inverter that drives the induction motor, and a controller that controls the inverter. Each of the controllers of the plurality of drive control systems includes a miswiring detector that calculates a torque estimation value on a basis of motor currents and voltage command values and detects miswiring between the induction motor and the inverter on a basis of the calculated torque estimation value and the torque command value.

Device and method for controlling a drive apparatus for traction of a vehicle
10875405 · 2020-12-29 · ·

A device which is configured for controlling a vehicle drive (40) for traction of a vehicle has a drive control apparatus and a monitoring apparatus. In order to ensure a high degree of safety when using the vehicle drive during rapid deceleration of the vehicle, the monitoring apparatus provides a traction release control signal value to the drive control apparatus, under the effect of which the drive control apparatus is enabled to control the vehicle drive, if, in addition to a traction release request signal value due to a rapid deceleration request and an additional traction lock request signal value due to a traction lock request, an additional traction release request signal value due to a traction release condition has effect on the monitoring apparatus. There is also described a vehicle with such a device and to a method for controlling a vehicle drive for traction of a vehicle.