US2020127540A1PendingUtilityA1

Pairs of Complementary Unidirectionally Magnetic Rotor/Stator Assemblies

Assignee: PACIFIC INT ENERGY SOLUTIONS INCPriority: May 20, 2016Filed: Oct 11, 2019Published: Apr 23, 2020
Est. expiryMay 20, 2036(~9.8 yrs left)· nominal 20-yr term from priority
H02K 19/18H02K 21/24H02K 15/02H02K 1/22H02K 7/183H02K 1/2706Y02E10/74H02K 16/00H02K 1/06H02K 1/27H02K 39/00H02K 1/2726F03D 9/25H02K 1/2733H02K 15/03H02K 1/272F03D 3/065H02K 2213/09F03D 3/062
43
PatentIndex Score
0
Cited by
0
References
0
Claims

Abstract

Pairs of unidirectionally magnetic rotor/stator assemblies are mounted for synchronous rotation and complementary, so that one creates pulsating positive current flow and the other creates pulsating negative current flow, as the rotor and stator in each assembly are rotated with respect to each other. The pulsating positive current flow and pulsating negative current flow are combined at a desired phase angle to create alternating current, without power loss due to reversal of current flow.

Claims

exact text as granted — not AI-modified
What is claimed is: 
     
         1 . A generator, comprising:
 a pair of complementary stator/rotor assemblies;   wherein said stator/rotor assemblies are mounted for synchronous rotation;   wherein each of said stator/rotor assemblies comprises:
 a stator; 
 coils mounted on said stator in a stator ring region; 
 a rotor; 
 magnets having magnetic fields with north and south poles mounted on said rotor in a rotor ring region having a shape and size substantially identical to said stator ring region, with all said north poles oriented outward from a north face of said rotor disc and all said south poles oriented outward from a south face of said rotor disc; 
 wherein said rotor is mounted for rotation around an axis of rotation centered in, and perpendicular to, said stator ring region; 
 wherein said rotor is parallel to, and closely displaced from, said stator by a rotor/stator gap; 
 whereby said magnetic fields of said magnets are axially aligned with said axis of rotation; and 
 whereby said magnets overlay said coils, separated by said rotor/stator gap; 
 whereby rotation of said rotor around said axis of rotation causes said poles of said magnets to travel towards and away from said coils to induce a pulsating current flow in only one direction through said coils; 
   wherein said stator/rotor assemblies are separated from each other by a separation distance sufficiently great to avoid substantial drag from interaction of their magnetic fields;   wherein said coils and magnets of a first of said pair of stator/rotor assemblies are configured to be complementary to said coils and magnets of the second of said pair of stator/rotor assemblies, so the first of said pair creates pulsating current in only one direction, and the second of said pair creates pulsating current in the opposite direction, and said coils are wired and wound so that said pulsating currents are combined at a desired phase angle to create alternating current;   whereby power loss from reversal of current flow is avoided.   
     
     
         2 . A generator according to  claim 1 , wherein said coils and magnets of said pair of stator/rotor assemblies are configured to be complementary by having said magnets of both of said stator/rotor assemblies aligned, with said north poles of both of said stator/rotor assemblies oriented in the same direction, and having coils of a first of said stator/rotor assemblies wound in a direction opposite said coils of the second of said stator/rotor assemblies. 
     
     
         3 . A generator according to  claim 1 , wherein said coils and magnets of said pair of stator/rotor assemblies are configured to be complementary by having said magnets of both of said stator/rotor assemblies aligned, with said north poles of both of said stator/rotor assemblies oriented in opposite directions, and having said coils of the first of said stator/rotor assemblies wound in the same direction as said coils of the second of said stator/rotor assemblies. 
     
     
         4 . A generator according to  claim 1 , wherein said coils and magnets of said pair of stator/rotor assemblies are configured to be complementary by having said magnets of both of said stator/rotor assemblies oriented in opposite directions, with coils of both said stator/rotor assemblies wound in the same direction. 
     
     
         5 . A generator according to  claim 1 , wherein said rotors are discs. 
     
     
         6 . A generator according to  claim 1 , wherein a first stator/rotor assembly is mounted on a bottom portion of a vertical axis wind turbine, and a second stator/rotor assembly is mounted on a top portion of said vertical axis wind turbine. 
     
     
         7 . A generator according to  claim 1 , wherein said magnets are rare earth magnets. 
     
     
         8 . A generator according to  claim 6 , wherein said rare earth magnets are neodymium magnets. 
     
     
         9 . A generator according to  claim 1 , wherein said stator/rotor assemblies are coaxial. 
     
     
         10 . A generator according to  claim 1 , further comprising a frame;
 wherein said stator/rotor assemblies are mounted for synchronous rotation within said frame by magnetic levitation magnets of opposite polarities mounted on said frame and on a bottom one of said rotors, respectively.   
     
     
         11 . A generator, comprising:
 a first stator;   a first rotor parallel to said first stator, mounted for rotation around a first rotor axis of rotation, closely displaced from said first stator by a first rotor/stator gap;   a second stator;   a second rotor parallel to said second stator, mounted for rotation around a second rotor axis of rotation, closely displaced from said second stator by a second rotor/stator gap;   a plurality of blades drivably connected to said first rotor and said second rotor;   whereby when said blades rotate, said blades drive said first rotor and said second rotor to synchronous rotation;   wherein said first stator and said first rotor comprise a first stator/rotor assembly and said second stator and said second rotor comprise a second stator/rotor assembly;   wherein each of said stator/rotor assemblies comprises:
 coils mounted on said stator in a stator ring region concentric with said rotor axis of rotation; 
 magnets having magnetic fields with north and south poles mounted on said rotor in a rotor ring region having a shape and size substantially identical to said stator ring region, with all said north poles oriented outward from a north face of said rotor and all said south poles oriented outward from a south face of said rotor; 
 whereby said magnetic fields of said magnets are axially aligned with said rotor axis of rotation; and 
 whereby said magnets overlay said coils, separated by said rotor/stator gap; 
   whereby rotation of said rotors around said rotor axes of rotation causes said poles of said magnets to travel towards and away from said coils to induce a pulsating current flow in only one direction through said coils;   wherein said coils and magnets of said first stator/rotor assembly are configured to be complementary to said coils and magnets of said second stator/rotor assembly, so the first stator/rotor assembly induces a pulsating current in only one direction and the second stator/rotor creates a pulsating current flow in only the opposite direction, whereby the pulsating current flows from both stator/rotor assemblies can be combined to create alternating current;   wherein said stator/rotor assemblies are separated from each other by a separation distance sufficiently great to avoid substantial drag from interaction of their magnetic fields;   whereby power loss from reversal of current flow is avoided.   
     
     
         12 . A generator, comprising:
 a pair of unidirectionally magnetic stator/rotor assemblies having coils and magnets mounted for synchronous rotation of said rotors;   wherein coils and magnets of a first assembly are configured to be complementary to said coils and magnets of a second assembly;   whereby the first assembly creates pulsating positive current flow, and the second assembly creates pulsating negative current flow; and   phase angle means for controlling the phase angle between the pulsating positive current flow and the pulsating negative current flow to create alternating current;   whereby power loss from reversal of current flow is avoided.   
     
     
         13 . A generator according to  claim 12 , wherein said phase angle means is selected from the group consisting of angularly offsetting the coils and magnets of the first assembly from the coils and magnets of the second assembly, adding a resistive load to one assembly, and adding an inductive load to one assembly.

Join the waitlist — get patent alerts

Track US2020127540A1 — get alerts on status changes and closely related new filings.

We store only your email — no account needed. See our privacy policy.