Vehicle drive device
A drive device, wheel drive technology, applied in the direction of electrical devices, power devices, electric power devices, etc.
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no. 1 approach
[0153] Figure 12 It is a nomographic diagram of the speed of the rear-wheel drive device during left-right inverse torque control (before the target rotation is reached) while running at a high vehicle speed. In addition, in the figure, the vector which arises by the loss etc. which are stably applied to each rotation element mentioned above is abbreviate|omitted. When traveling at a high vehicle speed, as described above, the front-wheel drive is performed by the front-wheel drive device 6 , so the one-way clutch 50 is in a disengaged state. At this time, the hydraulic brakes 60A, 60B are controlled to be in a disengaged state. Therefore, the connected internal gears 24A, 24B are not locked and are in a rotating state.
[0154] In this state, the torque control is performed so that the first motor 2A generates the first motor torque TM1 in the forward direction according to the target torque, and the second motor 2B generates the second motor torque in the reverse directio...
no. 2 approach
[0188] Next, the left-right reverse torque control of the second embodiment will be described.
[0189] The left and right reverse torque control in this embodiment controls the first and second electric motors 2A, 2B so that the internal gears 24A, 24B become the internal gear target rotational speeds. In the following description, the following case will be described as an example. : To engage the hydraulic brakes 60A, 60B, a correction torque is added to the second electric motor 2B so that the internal gears 24A, 24B are in a zero-rotation state (the rotational speed is zero) so that the rotational speed of the second electric motor 2B becomes the motor target rotational speed.
[0190] Such as Figure 9 As described in , when the forward speed is high, the first and second electric motors 2A, 2B stop the power running drive, thereby acting on the planetary gear carriers 23A, 23B from the axle shafts 10A, 10B to perform forward travel. torque, the one-way clutch 50 become...
no. 3 approach
[0212] Next, the left-right reverse torque control of the third embodiment will be described.
[0213] The left and right reverse torque control in this embodiment controls the first and second electric motors 2A and 2B so that one of the planetary gears 22A and 22B becomes the planetary gear target rotation speed. In the following description, the following case is taken as an example. To explain, in order to prevent the backlash caused by the reversal of the rotation direction of the planetary gears 22A, 22B, the correction torque is added to the first motor 2A so that the rotation direction of the planetary gears 22A, 22B does not reverse. control.
[0214] Figure 21 (a) is a nomographic diagram of the speed of the rear-wheel drive device 1 during the left turn of the vehicle 3. In order to assist the turning of the vehicle 3, the rear-wheel drive device 1 uses the first electric motor 2A to generate a reverse direction according to the target torque. Torque control is p...
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