US1935594A - Polyphase current generator - Google Patents

Polyphase current generator Download PDF

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Publication number
US1935594A
US1935594A US354102A US35410229A US1935594A US 1935594 A US1935594 A US 1935594A US 354102 A US354102 A US 354102A US 35410229 A US35410229 A US 35410229A US 1935594 A US1935594 A US 1935594A
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United States
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current
cathode
grids
anodes
phase
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US354102A
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Herman A Affel
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AT&T Corp
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American Telephone and Telegraph Co Inc
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Priority claimed from US510136A external-priority patent/US1725691A/en
Application filed by American Telephone and Telegraph Co Inc filed Critical American Telephone and Telegraph Co Inc
Priority to US354102A priority Critical patent/US1935594A/en
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    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02MAPPARATUS FOR CONVERSION BETWEEN AC AND AC, BETWEEN AC AND DC, OR BETWEEN DC AND DC, AND FOR USE WITH MAINS OR SIMILAR POWER SUPPLY SYSTEMS; CONVERSION OF DC OR AC INPUT POWER INTO SURGE OUTPUT POWER; CONTROL OR REGULATION THEREOF
    • H02M7/00Conversion of ac power input into dc power output; Conversion of dc power input into ac power output
    • H02M7/42Conversion of dc power input into ac power output without possibility of reversal
    • H02M7/44Conversion of dc power input into ac power output without possibility of reversal by static converters
    • H02M7/48Conversion of dc power input into ac power output without possibility of reversal by static converters using discharge tubes with control electrode or semiconductor devices with control electrode
    • H02M7/505Conversion of dc power input into ac power output without possibility of reversal by static converters using discharge tubes with control electrode or semiconductor devices with control electrode using devices of a thyratron or thyristor type requiring extinguishing means
    • H02M7/51Conversion of dc power input into ac power output without possibility of reversal by static converters using discharge tubes with control electrode or semiconductor devices with control electrode using devices of a thyratron or thyristor type requiring extinguishing means using discharge tubes only

Definitions

  • My present invention relates to systems of electrical distribution, and more particularly to av method of and means for supplying current to a polyphase distribution system.
  • the object of my invention is to provide a simple and convenient method of and apparatus for controlling the fiow of current from a direct current source in such a .way that polyphasealternating current may be supplied to a-system of distribution.
  • This application is a division of my copending application which maturedinto Patent No. 1,725,691, granted AugustZO, 1929, and assigned to the same assignee as the present application.
  • V i I In carrying my invention into effect I provide a plurality of space current paths through which the current from a direct current source may be caused to flow between an electron emitting cathode and a cooperating anode. All of these paths provided in a single device which includesa common cathode and separate anodes for each of the space current paths.
  • variable currents thus produced in the different paths may by suitable connections then be supplied to a distribution system to produce the I uated receptacle .which, for, convenien desired polyphase currents therein.
  • Fig. 1 shows diagrammatically one way in which my invention may be carried into effect for the amplification of a three phase current
  • Fig. 2 shows a modification in which a single phase current is employed to produce a rotating electrostatic field by means of which three phase current may be supplied to a distribution system
  • Fig. 3 shows a further modification in which the rotating field is produced by three phase current and quarter phase. current is supplied to the dis tribution system
  • Fig. 4 is a partial perspective showing one way in which the elements of an electron discharge device may be arranged to provide. a plurality of space current paths in one device.
  • I provide anelec tron discharge device having a filamentary cathode 1 adapted to be heated by a current source 2. tocause it to emit electrons.
  • the electron discharge device includesthree separate anodes 3, 4 and 5 and corresponding grid or control electrodes 6,7 and 8 for separately controlling the current to each of the anodes.
  • the anodes and grids. are preferably symmetrically cathode, which may be conveniently in the form of a straight filament as indicated in Fig. 4.
  • each of the anodes constitutes a segment of a hollow cylinder surrounding the cathode stitutes a separate portion of acylindrical grating surrounding the cathode.
  • segment as used in the previous sentence is intended to refer to a portion of a cylinder boundedin the direction of the main axis of the cylinder by two straight parallel edges.
  • my invention is not limited tothe' segmental form of anode but contemplatesthe use of all portions or configurations whichlend themselvesto a symmetrical arrangement.
  • anode'portions which are not symmetrical may sometimesbe used to ad vantage as well as electrical arrangements differ: ent from that shown, without departing from the spirit .of the invention.
  • the electrodes indicated should preferably all beenclosed in a highly evac- I H V v co in illustration, is omitted from the drawing. e
  • Separate input circuits for the three space cu'rrent paths are provided by connecting each of the grids through one of the secondary windings 9, 10 and 11 of a Y-connected three phase transformer to the cathode 1.
  • the primary windings 12, 13 and 14 of this transformer are delta con-. nected to the three phase supply circuit conductors 15, 16 and 17 for supplying to the input circuits the desired controlling current.
  • Separate output circuits for the'three space current paths are provided by connecting each of the anodes through one of the primary windings 18, 19 and 20 of a Y-connected transformer.
  • Thesecondary windings 21, 22 and 23 of this transformer are delta connected to the three conductors 24, 25 and 26 of a three phase distribution system.
  • Each of the output circuits also includes a common source 27 of' direct current.
  • the effective electrostatic fieldbetween the cathode V v 1 and the anode 5 is dependent on the potentials of grids 29 and 30.
  • the distances by which the difierent grids overlap the difierent anodes in any given case will of course depend on the phase difference between the voltages produced at the bution circuit is omitted, an auto-transformer connection of the windings 18, 19 and 20 being shown.
  • the input circuits in this case are completed by grounding the cathode l at 49 and by providing a ground connection 50 at a point in the supply system so chosen that the admittance between the two sides of the supply system and this ground connection are equal.
  • the desired point is obtained by connecting the two sides of the supply system to ground point 50 through two equal impedances 51 and 52.
  • the input circuits are excited by three phase current to produce the desired rotating field.
  • the out-' put circuits include the primary windings 39, 40, 41 and 42 of a quarter-phasetransformer having secondary windings 43 and 44 for supplying quarter-phase current to the conductors 45, 46, 47 and 48 of a quarter-phase system of distribution.
  • the primary windings of the output circuits of oppositely located anodes 35 and 37 are oppositely connected to the secondary winding 44 as the current in one of these output circuits increases at the same time that the current in the other decreases.
  • the primary windings of the output circuits of oppositely located anodes 36 and 38 are oppositely connected tothe secondary winding 43.
  • An electron discharge device comprising a cathode adapted to emit electrons, a plurality of grids symmetrically disposed about said cathode and a plurality of anodes which constitute sep-' arated segments of a hollow cylinder surrounding said cathode, said grids being disposed between a plurality of anodes each of which constitutes a .1

Description

may conveniently be Patented Nov. 14,1933
PATENT OFFICE 1,935,594 PoLYPHAsE CURRENT GENERATOR Herman A. Affel, Ridgewood, N. 3., assignor to American'Tele'p'hone and Telegraph Company a corporation of New York 1 Original application October 2 1, 1921, Serial No.
510,136. Divided andthis application April 10, 1929. Serial No. 354,102
2 Claims. (01. 250-275) My present invention relates to systems of electrical distribution, and more particularly to av method of and means for supplying current to a polyphase distribution system.
The object of my invention is to provide a simple and convenient method of and apparatus for controlling the fiow of current from a direct current source in such a .way that polyphasealternating current may be supplied to a-system of distribution. This application is a division of my copending application which maturedinto Patent No. 1,725,691, granted AugustZO, 1929, and assigned to the same assignee as the present application. V i I In carrying my invention into effect I provide a plurality of space current paths through which the current from a direct current source may be caused to flow between an electron emitting cathode and a cooperating anode. All of these paths provided in a single device which includesa common cathode and separate anodes for each of the space current paths. '1 also provide means for producing arotating electrical field, preferably electrostatic although an electromagnetic field may be employed, and separately and simultaneously controlling the flow of current in each of the paths to produce successively corresponding variations in all of the paths. The variable currents thus produced in the different paths may by suitable connections then be supplied to a distribution system to produce the I uated receptacle .which, for, convenien desired polyphase currents therein. g
The novel features which I believe to be characteristic of my invention are set forth with particularity in the appended claims. My invention itself however both as to its organization and 'method of operation together with further objects and advantages thereof will best be understood by reference to the following description taken in connection with the accompanying drawing in which Fig. 1 shows diagrammatically one way in which my invention may be carried into effect for the amplification of a three phase current; Fig. 2 shows a modification in which a single phase current is employed to produce a rotating electrostatic field by means of which three phase current may be supplied to a distribution system; Fig. 3 shows a further modification in which the rotating field is produced by three phase current and quarter phase. current is supplied to the dis tribution system and Fig. 4 is a partial perspective showing one way in which the elements of an electron discharge device may be arranged to provide. a plurality of space current paths in one device. r
As indicated in the drawing, I provide anelec tron discharge device having a filamentary cathode 1 adapted to be heated by a current source 2. tocause it to emit electrons. In the form of my invention shown in Fig. 1 the electron discharge device includesthree separate anodes 3, 4 and 5 and corresponding grid or control electrodes 6,7 and 8 for separately controlling the current to each of the anodes. The anodes and grids. are preferably symmetrically cathode, which may be conveniently in the form of a straight filament as indicated in Fig. 4. In the form of device illustrated each of the anodes constitutes a segment of a hollow cylinder surrounding the cathode stitutes a separate portion of acylindrical grating surrounding the cathode. The term segment as used in the previous sentence is intended to refer to a portion of a cylinder boundedin the direction of the main axis of the cylinder by two straight parallel edges. However, it will be understood that my invention is not limited tothe' segmental form of anode but contemplatesthe use of all portions or configurations whichlend themselvesto a symmetrical arrangement. is also obvious that anode'portions which are not symmetrical may sometimesbe used to ad vantage as well as electrical arrangements differ: ent from that shown, without departing from the spirit .of the invention. The electrodes indicated should preferably all beenclosed in a highly evac- I H V v co in illustration, is omitted from the drawing. e
Separate input circuits for the three space cu'rrent paths are provided by connecting each of the grids through one of the secondary windings 9, 10 and 11 of a Y-connected three phase transformer to the cathode 1. The primary windings 12, 13 and 14 of this transformer are delta con-. nected to the three phase supply circuit conductors 15, 16 and 17 for supplying to the input circuits the desired controlling current.
Separate output circuits for the'three space current paths are provided by connecting each of the anodes through one of the primary windings 18, 19 and 20 of a Y-connected transformer. Thesecondary windings 21, 22 and 23 of this transformer are delta connected to the three conductors 24, 25 and 26 of a three phase distribution system. Each of the output circuits also includes a common source 27 of' direct current.
While the particular-transformer connections indicated are convenient for the desired purpose any other connection may be employed if desired.
disposed about the: 65
and each of the grids con- 70 Fso.
The arrangement which I have described constitutes a simple and convenient three phase amplifier the method of operation of which is apparent. A rotating electrostatic field is produced 5 upon the three grids which produces correspondgridswith respect to the anodes.
ing variations in the currents in the three space current paths, the current variations produced in the different paths being displaced in phase 120 electrical degrees from the currents in the paths to adjacent electrodes. While a separate device might be provided for each of the space current paths without departing from the scope of my invention the arrangement shown is preferable as it permits the utilization of substantially the maximum electron emission of the cathode at all times. While I have indicated that the current for producing the electrostatic field is supplied by a separate source the system may be made selfexciting if desired by providing any suitable form of feed-back connection from the output circuits to the input circuits.
"In the arrangement shown in Fig. 2, four grids 27, 28, 29 and 30 are provided each forming substantially 90 degrees of the circumference of the cylindrical grating while each of the anodes 3, 4 and 5 forms substantially 120 degrees of the circumference'of the hollow cylinder. The desired rotating electrostatic field is derived from a source of single phase current supplied from supply conductors 31 and 32. The supply circuit is shunted by a capacity 33 and resistance 34, and grids 28 and 29 are connected across the resistance, and grids 2'7 and 30 are connected across the capacity. With these connections, po-
tentials which difier in phase from one another are applied to the grids 27, 28 and 30. In order that the polyphase potentials applied to the conductors 24, 25 and 26 be balanced, it is necessary that the eifective electrostatic fields between the "cathode and the different anodes differ in phase by'120 electrical degrees. This result is accomplished partly by the impedance apparatus comprising the condenser 33 and the resistors 34, 51 and 52 and partly by the arrangement of the Thus the effective electrostatic field between the cathode 1 and the anode 3 is dependent on the potentials of grids 27, 28 and 30; the effective electrostatic field betwen the cathode 1 and the anode 4 is dependent on the potentials ofgrids 28 and 29; and
the effective electrostatic fieldbetween the cathode V v 1 and the anode 5 is dependent on the potentials of grids 29 and 30. The distances by which the difierent grids overlap the difierent anodes in any given case will of course depend on the phase difference between the voltages produced at the bution circuit is omitted, an auto-transformer connection of the windings 18, 19 and 20 being shown. The input circuits in this case are completed by grounding the cathode l at 49 and by providing a ground connection 50 at a point in the supply system so chosen that the admittance between the two sides of the supply system and this ground connection are equal. In the present case the desired point is obtained by connecting the two sides of the supply system to ground point 50 through two equal impedances 51 and 52.
In the system shown in Fig. 3 three grids and. four anodes 35, 36, 37 and 38 are provided. The input circuits are excited by three phase current to produce the desired rotating field. The out-' put circuits include the primary windings 39, 40, 41 and 42 of a quarter-phasetransformer having secondary windings 43 and 44 for supplying quarter-phase current to the conductors 45, 46, 47 and 48 of a quarter-phase system of distribution. The primary windings of the output circuits of oppositely located anodes 35 and 37 are oppositely connected to the secondary winding 44 as the current in one of these output circuits increases at the same time that the current in the other decreases. Similarly, the primary windings of the output circuits of oppositely located anodes 36 and 38 are oppositely connected tothe secondary winding 43.
What I claim as new and desire to secure by Letters Patent of the United States, is:
1. An electron discharge device comprising a cathode adapted to emit electrons, a plurality of grids symmetrically disposed about said cathode and a plurality of anodes which constitute sep-' arated segments of a hollow cylinder surrounding said cathode, said grids being disposed between a plurality of anodes each of which constitutes a .1
separate portion of a hollow cylinder surrounding said grids. V 1 HERMAN A. AFFEL.
CERTIFICATE OF CORRECTION.
Patent No. 935,594. November 14, 1933.
HERMAN A. AFFEL.
it hereby certified that error appears in the printed specification of the above rnzmbered patent requiring correction as follows: ?age 2, lines 125 and 126, eiaim 2, for "each of which constitutes a separate portion" read which constitute separated portions; and that the said Letters Patent should be read with this correction therein that the same may conform to the record of the case in the Patent Office.
Signed and sealed this 26th day of December, A. D. 1933.
Richard Spencer {Seal} Acting Commissioner of Patents.
US354102A 1921-10-24 1929-04-10 Polyphase current generator Expired - Lifetime US1935594A (en)

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Application Number Priority Date Filing Date Title
US510136A US1725691A (en) 1921-10-24 1921-10-24 System of electrical distribution
US354102A US1935594A (en) 1921-10-24 1929-04-10 Polyphase current generator

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