Patents by Inventor Yushi ARAKI
Yushi ARAKI has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).
-
Patent number: 12158365Abstract: A physical quantity detection device for reducing an influence of a sound wave generated in a turbocharger and suppressing a decrease in detection accuracy of a physical quantity including a flow rate of gas. The device detects a physical quantity of air from an intake passage of an engine equipped with a turbocharger. The physical device includes a sub-passage that takes in part of air flowing from an upstream to a downstream side of the intake passage along a first direction, and a flow rate detection unit that detects a flow rate of the air taken in the sub-passage. The sub-passage includes an inlet that opens toward the upstream side in the first direction, an outlet that opens toward the downstream side in the first direction, and an attenuation chamber that attenuates a sound wave propagating from the turbocharger to an inside of the outlet.Type: GrantFiled: September 7, 2021Date of Patent: December 3, 2024Assignee: Hitachi Astemo, Ltd.Inventors: Yushi Araki, Akira Uenodan, Nobuaki Gorai
-
Patent number: 11949353Abstract: There is provided a motor control device which enables torque ripple suppressing control high in followability by executing direct voltage control. A motor control device includes a voltage command calculation unit 15 which calculates a d-axis voltage command value Vdref and a q-axis voltage command value Vqref from a d-axis current command value id* and a q-axis current command value iq* of a motor 6, a feed forward command value calculation unit 23 which calculates a qi-axis voltage feed forward command value Vqff* for generating a q-axis current ripple on the basis of spatial harmonic parameters and the frequency characteristics of a motor winding, and a subtraction unit 10 which subtracts the q-axis voltage feed forward command value Vqff* calculated by the feed forward command value calculation unit 23 from the q-axis voltage command value Vqref calculated by the voltage command calculation unit 15.Type: GrantFiled: February 19, 2021Date of Patent: April 2, 2024Assignee: SANDEN CORPORATIONInventors: Yushi Araki, Tatsuki Kashihara
-
Publication number: 20240072645Abstract: The invention provides an inverter device which effectively cancels the generation of common mode noise associated with dead-time effects and misjudgement of the polarity of a phase current at switching in the case where a fluctuation in a neutral point potential of a motor is suppressed by canceling a change in a phase voltage with another change in the phase voltage. A phase voltage command operation unit 33 of a control device includes a phase current prediction part 41 which predicts a phase current at a switching timing of each phase, and a correction control part 42 which corrects a switching operation so as to cancel a change in the phase voltage applied to the motor with another change in the phase voltage, based on the phase current of each phase at the switching timing predicted by the phase current prediction part 41.Type: ApplicationFiled: December 17, 2021Publication date: February 29, 2024Applicant: SANDEN CORPORATIONInventors: Yushi ARAKI, Tatsuki KASHIHARA
-
Publication number: 20240027245Abstract: A physical quantity detection device for reducing an influence of a sound wave generated in a turbocharger and suppressing a decrease in detection accuracy of a physical quantity including a flow rate of gas. The device detects a physical quantity of air from an intake passage of an engine equipped with a turbocharger. The physical device includes a sub-passage that takes in part of air flowing from an upstream to a downstream side of the intake passage along a first direction, and a flow rate detection unit that detects a flow rate of the air taken in the sub-passage. The sub-passage includes an inlet that opens toward the upstream side in the first direction, an outlet that opens toward the downstream side in the first direction, and an attenuation chamber that attenuates a sound wave propagating from the turbocharger to an inside of the outlet.Type: ApplicationFiled: September 7, 2021Publication date: January 25, 2024Applicant: Hitachi Astemo, Ltd.Inventors: Yushi ARAKI, Akira UENODAN, Nobuaki GORAI
-
Publication number: 20230412092Abstract: An inverter device is provided which is based on a discontinuous modulation method and makes it possible to further reduce common mode noise. A control device L includes a phase voltage command operation unit 33 which calculates a continuous modulation voltage command value, an inter-line modulation operation unit 34 which calculates a discontinuous modulation voltage command value which fixes an ON/OFF state of a switching element of one phase of an inverter circuit 28 and modulates an ON/OFF state of switching elements of the other two phases, and a PWM signal generation unit 36 which performs PWM control on the inverter circuit. The control device synchronizes switching timings of the switching elements of the two phases in which the ON/OFF state is modulated, and cancels out a change in a phase voltage applied to a motor 8 by a change in another phase voltage.Type: ApplicationFiled: August 3, 2021Publication date: December 21, 2023Applicant: SANDEN CORPORATIONInventors: Tatsuki Kashihara, Yushi Araki
-
Publication number: 20230101356Abstract: There is provided a motor control device which enables torque ripple suppressing control high in followability by executing direct voltage control. A motor control device includes a voltage command calculation unit 15 which calculates a d-axis voltage command value Vdref and a q-axis voltage command value Vqref from a d-axis current command value id* and a q-axis current command value iq* of a motor 6, a feed forward command value calculation unit 23 which calculates a qi-axis voltage feed forward command value Vqff* for generating a q-axis current ripple on the basis of spatial harmonic parameters and the frequency characteristics of a motor winding, and a subtraction unit 10 which subtracts the q-axis voltage feed forward command value Vqff* calculated by the feed forward command value calculation unit 23 from the q-axis voltage command value Vqref calculated by the voltage command calculation unit 15.Type: ApplicationFiled: February 19, 2021Publication date: March 30, 2023Applicant: SANDEN ADVANCED TECHNOLOGY CORPORATIONInventors: Yushi ARAKI, Tatsuki KASHIHARA