Claims
- 1. A multiphase electric machine comprising:
a rotor, a stator, the stator comprising a plurality of stator core elements, the plurality of stator core elements being arranged in groups, each group of stator core elements comprising at least one stator core element, each group of stator core elements being associated with a corresponding one of the phases of the multiphase machine, the stator core elements in each group being structurally separated from the stator core elements in each other group, and a controller for controlling electrical flow in each group of stator core elements independently of electrical flow in each other group, whereby each phase of the multiphase machine is controllable independently of each other phase.
- 2. A multiphase electric machine comprising:
a rotor, a stator, the stator comprising a plurality of stator core elements, the plurality of stator core elements being arranged in groups, each group of stator core elements comprising at least one stator core element, each group of stator core elements being associated with a corresponding one of the phases of the multiphase machine, the stator core elements in each group being structurally and electromagnetically separated from the stator core elements in each other group, and a controller for controlling electrical flow in each group of stator core elements independently of electrical flow in each other group, whereby each phase of the multiphase machine is controllable independently of each other phase, thereby establishing relative rotation between the rotor and the stator at a speed and a torque that are dynamically selectable.
- 3. The machine of claim 2 wherein the machine has an efficiency and wherein the controller is operable to optimize the efficiency of the machine for each selected torque and speed.
- 4. A multiphase electric machine comprising:
a first member, a second member, the second member comprising a plurality of core elements, the plurality of core elements being arranged in groups, each group of core elements comprising at least one core element, each group of core elements being associated with a corresponding one of the phases of the multiphase machine, the core elements in each group being structurally and electromagnetically separated from the core elements in each other group, and a controller for controlling electrical flow in each group of core elements independently of electrical flow in each other group, whereby each phase of the multiphase machine is controllable independently of each other phase, thereby establishing relative movement between the first member and the second member in a direction and with a force that are dynamically selectable.
- 5. A multiphase electric machine comprising:
a first member, a second member, at least one of the first and second members comprising a plurality of core elements, the plurality of core elements being arranged in groups, each group of core elements comprising at least one core element, each group of core elements being associated with a corresponding one of the phases of the multiphase machine, the core elements in each group being structurally and electromagnetically separated from the core elements in each other group, and a controller for controlling electrical flow in each group of core elements independently of electrical flow in each other group, whereby each phase of the multiphase machine is controllable independently of each other phase, thereby establishing relative movement between the first member and the second member in a direction and with a force that are dynamically selectable.
- 6. A multiphase electric machine comprising:
at least one member, the at least one member comprising a plurality of core elements, the plurality of core elements being arranged in groups, each group of core elements comprising at least one core element, each group of core elements being associated with a corresponding one of the phases of the multiphase machine, the core elements in each group being structurally and electromagnetically separated from the core elements in each other group, and a controller for controlling electrical flow in each group of core elements independently of electrical flow in each other group, whereby each phase of the multiphase machine is controllable independently of each other phase, thereby establishing movement of the at least one member in a direction and with a force that are dynamically selectable.
- 7. A multiphase electric machine comprising at least one member, the at least one member comprising a plurality of core elements, the plurality of core elements being arranged in groups, each group of core elements comprising at least one core element, each group of core elements being associated with a corresponding one of the phases of the multiphase machine, the core elements in each group being sufficiently separated, at least one of structurally or electromagnetically, from the core elements in each other group to enable control of electrical flow in each group of core elements independently of electrical flow in each other group, whereby each phase of the multiphase machine is controllable independently of each other phase, thereby establishing movement of the at least one member in a direction and with a force that are dynamically selectable.
- 8. The machine of claim 2 wherein the machine has a weight, wherein the torque and weight define a ratio, and wherein the ratio has a value not less than 20 Nm/kg.
- 9. The machine of claim 2 wherein the machine has a volume, wherein the torque and volume define a ratio, and wherein the ratio has a value not less than 39,000 N/m2.
- 10. The machine of claim 2 wherein the machine is operable at a speed ranging between at least 0 RPM and 500 RPM, and at an efficiency that is not less than 80% at every speed between at least 50 RPM and 300 RPM.
- 11. A method comprising:
providing a multiphase electric machine comprising at least a rotor and a stator, the stator comprising a plurality of stator core elements, arranging the plurality of stator core elements in groups, each group of stator core elements comprising at least one stator core element, each group of stator core elements being associated with a corresponding one of the phases of the multiphase machine, structurally separating the stator core elements in each group from the stator core elements in each other group, and controlling electrical flow in each group of stator core elements independently of electrical flow in each other group, whereby each phase of the multiphase machine is controllable independently of each other phase.
- 12. A method comprising:
providing a multiphase electric machine comprising at least a rotor and a stator, the stator comprising a plurality of stator core elements, arranging the plurality of stator core elements in groups, each group of stator core elements comprising at least one stator core element, each group of stator core elements being associated with a corresponding one of the phases of the multiphase machine, structurally and electromagnetically separating the stator core elements in each group from the stator core elements in each other group, and controlling electrical flow in each group of stator core elements independently of electrical flow in each other group, whereby each phase of the multiphase machine is controllable independently of each other phase, thereby establishing relative rotation between the rotor and the stator at a speed and a torque that are dynamically selectable.
- 13. The method of claim 12 wherein the machine has an efficiency and wherein the step of controlling electrical flow in each group of stator core elements comprises controlling electrical flow to optimize the efficiency of the machine for each selected torque and speed.
- 14. A method comprising:
providing a multiphase electric machine comprising at least a first member and a second member, the second member comprising a plurality of core elements, arranging the plurality of core elements in groups, each group of core elements comprising at least one core element, each group of core elements being associated with a corresponding one of the phases of the multiphase machine, structurally and electromagnetically separating the core elements in each group from the core elements in each other group, and controlling electrical flow in each group of core elements independently of electrical flow in each other group, whereby each phase of the multiphase machine is controllable independently of each other phase, thereby establishing relative movement between the first member and the second member in a direction and with a force that are dynamically selectable.
- 15. A method comprising:
providing a multiphase electric machine comprising at least a first member and a second member, at least one of the first and second members comprising a plurality of core elements, arranging the plurality of core elements in groups, each group of core elements comprising at least one core element, each group of core elements being associated with a corresponding one of the phases of the multiphase machine, structurally and electromagnetically separating the core elements in each group from the core elements in each other group, and controlling electrical flow in each group of core elements independently of electrical flow in each other group, whereby each phase of the multiphase machine is controllable independently of each other phase, thereby establishing relative movement between the first member and the second member in a direction and with a force that are dynamically selectable.
- 16. A method comprising:
providing a multiphase electric machine comprising at least one member, the at least one member comprising a plurality of core elements, arranging the plurality of core elements in groups, each group of core elements comprising at least one core element, each group of core elements being associated with a corresponding one of the phases of the multiphase machine, structurally and electromagnetically separating the core elements in each group from the core elements in each other group, and controlling electrical flow in each group of core elements independently of electrical flow in each other group, whereby each phase of the multiphase machine is controllable independently of each other phase, thereby establishing movement of the at least one member in a direction and with a force that are dynamically selectable.
- 17. A method comprising:
providing a multiphase electric machine comprising at least one member, the at least one member comprising a plurality of core elements, arranging the plurality of core elements in groups, each group of core elements comprising at least one core element, each group of core elements being associated with a corresponding one of the phases of the multiphase machine, at least one of structurally separating and electromagnetically separating the core elements in each group from the core elements in each other group to enable control of electrical flow in each group of core elements independently of electrical flow in each other group, whereby each phase of the multiphase machine is controllable independently of each other phase, thereby establishing movement of the at least one member in a direction and with a force that are dynamically selectable.
- 18. The method of claim 12 wherein the machine has a weight, wherein the torque and weight define a ratio, and wherein the ratio has a value not less than 20 Nm/kg.
- 19. The method of claim 12 wherein the machine has a volume, wherein the torque and volume define a ratio, and wherein the ratio has a value not less than 39,000 N/m2.
- 20. The method of claim 12 wherein the machine is operable at a speed ranging between at least 0 RPM and 500 RPM, and at an efficiency that is not less than 80% at every speed between at least 50 RPM and 300 RPM.
- 21. A method of making a multiphase electric machine, comprising:
providing at least a rotor and a stator, the stator comprising a plurality of stator core elements, arranging the plurality of stator core elements in groups, each group of stator core elements comprising at least one stator core element, each group of stator core elements being associated with a corresponding one of the phases of the multiphase machine, structurally separating the stator core elements in each group from the stator core elements in each other group, and controlling electrical flow in each group of stator core elements independently of electrical flow in each other group, whereby each phase of the multiphase machine is controllable independently of each other phase.
- 22. A method of making a multiphase electric machine, comprising:
providing at least a rotor and a stator, the stator comprising a plurality of stator core elements, arranging the plurality of stator core elements in groups, each group of stator core elements comprising at least one stator core element, each group of stator core elements being associated with a corresponding one of the phases of the multiphase machine, structurally and electromagnetically separating the stator core elements in each group from the stator core elements in each other group, and controlling electrical flow in each group of stator core elements independently of electrical flow in each other group, whereby each phase of the multiphase machine is controllable independently of each other phase, thereby establishing relative rotation between the rotor and the stator at a speed and a torque that are dynamically selectable.
- 23. A method of making a multiphase electric machine, comprising:
providing at least a first member and a second member, the second member comprising a plurality of core elements, arranging the plurality of core elements in groups, each group of core elements comprising at least one core element, each group of core elements being associated with a corresponding one of the phases of the multiphase machine, structurally and electromagnetically separating the core elements in each group from the core elements in each other group, and controlling electrical flow in each group of core elements independently of electrical flow in each other group, whereby each phase of the multiphase machine is controllable independently of each other phase, thereby establishing relative movement between the first member and the second member in a direction and with a force that are dynamically selectable.
- 24. A method of making a multiphase electric machine, comprising:
providing at least a first member and a second member, at least one of the first and second members comprising a plurality of core elements, arranging the plurality of core elements in groups, each group of core elements comprising at least one core element, each group of core elements being associated with a corresponding one of the phases of the multiphase machine, structurally and electromagnetically separating the core elements in each group from the core elements in each other group, and controlling electrical flow in each group of core elements independently of electrical flow in each other group, whereby each phase of the multiphase machine is controllable independently of each other phase, thereby establishing relative movement between the first member and the second member in a direction and with a force that are dynamically selectable.
- 25. A method of making a multiphase electric machine, comprising:
providing at least one member, the at least one member comprising a plurality of core elements, arranging the plurality of core elements in groups, each group of core elements comprising at least one core element, each group of core elements being associated with a corresponding one of the phases of the multiphase machine, structurally and electromagnetically separating the core elements in each group from the core elements in each other group, and controlling electrical flow in each group of core elements independently of electrical flow in each other group, whereby each phase of the multiphase machine is controllable independently of each other phase, thereby establishing movement of the at least one member in a direction and with a force that are dynamically selectable.
- 26. A method of making a multiphase electric machine, comprising:
providing at least one member, the at least one member comprising a plurality of core elements, arranging the plurality of core elements in groups, each group of core elements comprising at least one core element, each group of core elements being associated with a corresponding one of the phases of the multiphase machine, at least one of structurally separating and electromagnetically separating the core elements in each group from the core elements in each other group to enable control of electrical flow in each group of core elements independently of electrical flow in each other group, whereby each phase of the multiphase machine is controllable independently of each other phase, thereby establishing movement of the at least one member in a direction and with a force that are dynamically selectable.
RELATED APPLICATIONS
[0001] This application claims priority from copending U.S. application Ser. No. 09/826,423 of Maslov et al., filed Apr. 5, 2001, U.S. application Ser. No. 09/826,422 of Maslov et al., filed Apr. 5, 2001, U.S. application Ser. No. 09/966,102, of Maslov et al., filed Oct. 1, 2001, U.S. application Ser. No. 09/993,596 of Pyntikov et al., filed Nov. 27, 2001, U.S. application Ser. No. 10/173,610, of Maslov et al., filed Jun. 19, 2002, U.S. Application No. 60/399,415, of Maslov et al., filed Jul. 31, 2002, U.S. application Ser. No. 10/290,537, of Maslov et al., filed Nov. 8, 2002, U.S. application No. (Docket No. 57357-041) of Maslov et al., filed Jan. 29, 2003, and U.S. application No. (Docket No. 57357-052) of Maslov et al., filed Jan. 29, 2003, all commonly assigned with the present application. The disclosures of these applications are incorporated by reference herein.
Provisional Applications (1)
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Number |
Date |
Country |
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60399415 |
Jul 2002 |
US |