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公开(公告)号:US20210297021A1
公开(公告)日:2021-09-23
申请号:US16487938
申请日:2017-11-23
Applicant: SEDEMAC MECHATRONICS PVT LTD
Inventor: Amit DIXIT , Arvind ATHAVALE , Anaykumar JOSHI
Abstract: A system for controlling electrical power generated by a permanent magnet machine coupled to an internal combustion engine includes a central processing unit configured to determine speed of the machine, and compare the machine speed with a predetermined range of machine speeds, a series power switching circuit connected between the machine and a battery, a bus decoupling power switch connected between a voltage bus and the battery, and a bridge switching circuit connected between the voltage bus and the machine and configured to amplify voltage generated by the machine if the machine speed is less than a predetermined value or fall within a predetermined range thereby charging the battery with amplified voltage even at lower machine speed. The central processing unit selectively connects the bridge switching circuit with the battery by actuating the bus decoupling switch and/or the series power switching circuit depending upon the machine speed.
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公开(公告)号:US20230305067A1
公开(公告)日:2023-09-28
申请号:US18020004
申请日:2021-08-26
Applicant: SEDEMAC MECHATRONICS PVT LTD
Inventor: Suraj Kumar PABBU , Amey P. WADEGAONKAR , Anaykumar JOSHI
IPC: G01R31/367 , G01R31/392 , G01R31/3842
CPC classification number: G01R31/367 , G01R31/392 , G01R31/3842
Abstract: A Method for Estimating State of Charge and State of Health of Battery and a System thereof The present invention relates to a method (200) and system (100) for estimating state of charge and state of health of a battery (10). A first vector (x) and a second vector (0) are initialised. The first vector (x) is estimated and updated by a first state-space filter based first equivalent circuit solver by assuming a fixed value of the second vector (0). the second vector (0) is estimated and updated based on an Electrochemical Model and then by a second state-space filter based second equivalent circuit solver. The updated values of the second vector (0) by the Electrochemical Model and the second state-space filter based equivalent circuit solver are merged. The state of charge is obtained from the updated value of the first vector (x), and the state of the health is obtained from the merged and updated value of the second vector (0).
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公开(公告)号:US20230268864A1
公开(公告)日:2023-08-24
申请号:US18014539
申请日:2021-05-21
Applicant: SEDEMAC MECHATRONICS PVT LTD
Inventor: Anaykumar JOSHI , Amit DIXIT
CPC classification number: H02P27/085 , H02P6/007
Abstract: The present invention relates to a method (200) and system (100) for controlling a rotary electric machine wherein a state of the rotary electric machine is determined between a low speed state and a high speed state. In the low speed state, a first rotor position (P1) and a first rotor speed (S1) are estimated based on intra-PWM current ripple (ΔX), a mean current vector (Y) and an inductance vector. A second rotor position (P2) and second rotor speed (S2) is estimated based on average current flowing through stator phase windings. State of rotary electric machine is selected based on estimated first rotor speed (S1) and/or estimated second rotor speed (S2). At low speed state, PWM signals are updated based on estimated first rotor position (P1), and at high speed state, PWM signals are updated based on estimated second rotor position (P2).
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公开(公告)号:US12015315B2
公开(公告)日:2024-06-18
申请号:US17928410
申请日:2021-05-28
Applicant: SEDEMAC MECHATRONICS PVT LTD
Inventor: Amit Dixit , Anaykumar Joshi
CPC classification number: H02K21/22 , F02N11/04 , H01R4/625 , H02K3/14 , H02K7/1815 , H02K11/0094
Abstract: An Integrated Starter Generator system (100) comprising a battery (110) and a three-phase brushless DC electric machine (130). The electric machine (130) has a stator (132) with 3n stator teeth (132′), ‘n’ being a natural number, and each stator tooth (132′) has a coil corresponding to one of the three phases. The electric machine (130) further has a rotor (134) with 4n rotor poles (134′) facing the stator (132), and magnets on the rotor poles (134′) are disposed with an alternating sequence of magnet polarity facing the stator (132). Herein, back-emf constant of the electric machine (130) is substantially between 25% of a nominal battery voltage and 75% of the nominal battery voltage.
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公开(公告)号:US11190118B2
公开(公告)日:2021-11-30
申请号:US16487938
申请日:2017-11-23
Applicant: SEDEMAC MECHATRONICS PVT LTD
Inventor: Amit Dixit , Arvind Athavale , Anaykumar Joshi
Abstract: A system for controlling electrical power generated by a permanent magnet machine coupled to an internal combustion engine includes a central processing unit configured to determine speed of the machine, and compare the machine speed with a predetermined range of machine speeds, a series power switching circuit connected between the machine and a battery, a bus decoupling power switch connected between a voltage bus and the battery, and a bridge switching circuit connected between the voltage bus and the machine and configured to amplify voltage generated by the machine if the machine speed is less than a predetermined value or fall within a predetermined range thereby charging the battery with amplified voltage even at lower machine speeds. The central processing unit selectively connects the bridge switching circuit with the battery by actuating the bus decoupling switch and/or the series power switching circuit depending upon the machine speed.
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公开(公告)号:US20230208263A1
公开(公告)日:2023-06-29
申请号:US17928365
申请日:2021-05-28
Applicant: SEDEMAC MECHATRONICS PVT LTD
Inventor: Amit DIXIT , Anaykumar JOSHI
CPC classification number: H02K21/22 , H02K7/1815 , H02K11/0094
Abstract: An Integrated Starter Generator System The present invention relates to an Integrated Starter Generator system (100) comprising a battery (110) and a three-phase brushless DC electric machine (130). The electric machine (130) has a stator (132) with 6n stator teeth (132′), ‘n’ being a natural number, and each stator tooth (132′) has a coil corresponding to one of the three phases. The electric machine (130) further has a rotor (134) with 6n±2 rotor poles (134′) facing the stator, and magnets on the rotor poles (134′) are disposed with an alternating sequence of magnet polarity facing the stator (132).
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公开(公告)号:US10550815B2
公开(公告)日:2020-02-04
申请号:US16077107
申请日:2017-02-13
Applicant: SEDEMAC MECHATRONICS PVT LTD
Inventor: Joshi Anaykumar , Dixit Amit
Abstract: The invention relates to a method for controlling an integrated starter-generator, including receiving a start signal; determining an initial position of a rotor with respect to a stator phase winding integrated starter-generator of the integrated starter-generator; applying a pulse-width-modulated signal to the stator winding corresponding to determined initial position of the rotor; measuring current of the stator winding in response to applied pulse-width-modulated signal to determine current variation; if current variation is more than a threshold value, determining updated rotor position and applying a pulse-width-modulated signal to the stator winding corresponding to the updated rotor position; determining speed of the rotor, if speed of the rotor is more than a threshold value, monitoring a trigger signal from an ignition trigger sensor coupled to the engine; and if the trigger signal is received, determining the updated rotor position and exciting the stator winding corresponding to the updated rotor position.
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公开(公告)号:US12119769B2
公开(公告)日:2024-10-15
申请号:US18014539
申请日:2021-05-21
Applicant: SEDEMAC MECHATRONICS PVT LTD
Inventor: Anaykumar Joshi , Amit Dixit
CPC classification number: H02P27/085 , H02P6/007
Abstract: The present invention relates to a method (200) and system (100) for controlling a rotary electric machine wherein a state of the rotary electric machine is determined between a low speed state and a high speed state. In the low speed state, a first rotor position (P1) and a first rotor speed (S1) are estimated based on intra-PWM current ripple (ΔX), a mean current vector (Y) and an inductance vector. A second rotor position (P2) and second rotor speed (S2) is estimated based on average current flowing through stator phase windings. State of rotary electric machine is selected based on estimated first rotor speed (S1) and/or estimated second rotor speed (S2). At low speed state, PWM signals are updated based on estimated first rotor position (P1), and at high speed state, PWM signals are updated based on estimated second rotor position (P2).
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公开(公告)号:US20230204006A1
公开(公告)日:2023-06-29
申请号:US17928410
申请日:2021-05-28
Applicant: SEDEMAC MECHATRONICS PVT LTD
Inventor: Amit DIXIT , Anaykumar JOSHI
Abstract: An Integrated Starter Generator System The present invention relates to an Integrated Starter Generator system (100) comprising a battery (110) and a three-phase brushless DC electric machine (130). The electric machine (130) has a stator (132) with 3n stator teeth (132′), ‘n’ being a natural number, and each stator tooth (132′) has a coil corresponding to one of the three phases. The electric machine (130) further has a rotor (134) with 4n rotor poles (134′) facing the stator (132), and magnets on the rotor poles (134′) are disposed with an alternating sequence of magnet polarity facing the stator (132). Herein, back-emf constant of the electric machine (130) is substantially between 25% of a nominal battery voltage and 75% of the nominal battery voltage.
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公开(公告)号:US11349418B2
公开(公告)日:2022-05-31
申请号:US16077156
申请日:2017-02-13
Applicant: SEDEMAC MECHATRONICS PVT LTD
Inventor: Joshi Anaykumar , Dixit Amit
Abstract: The invention relates to a method for cranking an internal combustion engine, including the steps of: (a) receiving a start signal; (b) determining an initial position of the rotor with respect to a stator phase winding; (c) applying a pulse-width-modulated signal to the stator winding corresponding to determined initial position of the rotor; (d) determining a threshold value of the stator current variation; (e) measuring current of the stator winding in response to applied pulse-width-modulated signal to determine current variation; (f) if current variation is more than the threshold value, determining updated rotor position, applying a pulse-width-modulated signal to the stator winding corresponding to the updated rotor position; and repeating steps (d)-(f); and (g) if current variation is less than the threshold value, applying a pulse-width-modulated signal to the stator winding corresponding to the last updated rotor position and repeating steps (d)-(g).
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