WO2015041785A2 - Synchronous transfer control system in an arc resistant enclosure - Google Patents
Synchronous transfer control system in an arc resistant enclosure Download PDFInfo
- Publication number
- WO2015041785A2 WO2015041785A2 PCT/US2014/051610 US2014051610W WO2015041785A2 WO 2015041785 A2 WO2015041785 A2 WO 2015041785A2 US 2014051610 W US2014051610 W US 2014051610W WO 2015041785 A2 WO2015041785 A2 WO 2015041785A2
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- bus
- transfer control
- synchronous transfer
- coupled
- control system
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Ceased
Links
Classifications
-
- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02B—BOARDS, SUBSTATIONS OR SWITCHING ARRANGEMENTS FOR THE SUPPLY OR DISTRIBUTION OF ELECTRIC POWER
- H02B13/00—Arrangement of switchgear in which switches are enclosed in, or structurally associated with, a casing, e.g. cubicle
- H02B13/02—Arrangement of switchgear in which switches are enclosed in, or structurally associated with, a casing, e.g. cubicle with metal casing
- H02B13/025—Safety arrangements, e.g. in case of excessive pressure or fire due to electrical defect
-
- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02P—CONTROL OR REGULATION OF ELECTRIC MOTORS, ELECTRIC GENERATORS OR DYNAMO-ELECTRIC CONVERTERS; CONTROLLING TRANSFORMERS, REACTORS OR CHOKE COILS
- H02P1/00—Arrangements for starting electric motors or dynamo-electric converters
- H02P1/16—Arrangements for starting electric motors or dynamo-electric converters for starting dynamo-electric motors or dynamo-electric converters
- H02P1/54—Arrangements for starting electric motors or dynamo-electric converters for starting dynamo-electric motors or dynamo-electric converters for starting two or more dynamo-electric motors
-
- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01H—ELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
- H01H33/00—High-tension or heavy-current switches with arc-extinguishing or arc-preventing means
- H01H33/02—Details
- H01H33/04—Means for extinguishing or preventing arc between current-carrying parts
- H01H33/08—Stationary parts for restricting or subdividing the arc, e.g. barrier plate
-
- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02B—BOARDS, SUBSTATIONS OR SWITCHING ARRANGEMENTS FOR THE SUPPLY OR DISTRIBUTION OF ELECTRIC POWER
- H02B1/00—Frameworks, boards, panels, desks, casings; Details of substations or switching arrangements
- H02B1/24—Circuit arrangements for boards or switchyards
-
- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02P—CONTROL OR REGULATION OF ELECTRIC MOTORS, ELECTRIC GENERATORS OR DYNAMO-ELECTRIC CONVERTERS; CONTROLLING TRANSFORMERS, REACTORS OR CHOKE COILS
- H02P1/00—Arrangements for starting electric motors or dynamo-electric converters
- H02P1/16—Arrangements for starting electric motors or dynamo-electric converters for starting dynamo-electric motors or dynamo-electric converters
- H02P1/54—Arrangements for starting electric motors or dynamo-electric converters for starting dynamo-electric motors or dynamo-electric converters for starting two or more dynamo-electric motors
- H02P1/58—Arrangements for starting electric motors or dynamo-electric converters for starting dynamo-electric motors or dynamo-electric converters for starting two or more dynamo-electric motors sequentially
Definitions
- the disclosed concept relates generally to a system for controlling the operation of multiple electric motors in an industrial setting (e.g., a pumping station), and, in particular, to a synchronous transfer control system that is provided in an arc resistant enclosure that meets IEEE 07.20.7 standards.
- an industrial setting e.g., a pumping station
- a synchronous transfer control system that is provided in an arc resistant enclosure that meets IEEE 07.20.7 standards.
- VFDs variable frequency dri ves
- a contactor simply connects the motor directly across the AC line.
- a motor connected to the AC line will accelerate very quickly to full speed and draw a large amount of current during acceleration.
- a soft starter is a device used to slowly ramp up a motor to full speed, and/or slowly ramp down the motor to a stop. Reducing both current draw and the mechanical strain on the system are big advantages of using a soft starter in place of a contactor. Many large pumps and fans require at least a 30-second ramp time to prevent mechanical damage to the system. Soft starters are more common on larger horsepower systems.
- a VFD not only has the ramping ability of a soft starter, but also allows the speed to be varied, while offering more flexibility and features.
- a VFD not only has the ramping ability of a soft starter, but also allows the speed to be varied, while offering more flexibility and features.
- the arc resistant synchronous transfer control system includes an arc resistant enclosure having a main housing having an open top portion and an arc plenum fhndly coupled to the top portion, the arc plenum ha ving a closed front portion , a closed rear portion, and at least one open side portion structured for direct or indirect connection to a duct or vent system, the main housing having a number of enclosure members each made of a material having arc resistant ratings of 50kA - 0.5s, Type 2B.
- the arc resistant synchronous transfer control system also includes a plurality of synchronous transfer control components housed within the main housing, the synchronous transfe control components including; (i) a hard bussed first bus structured to be coupled to a first power source, (it) a second power source, and (ni) hard bussed second bus, wherein an output of the second power source is able to be selectively coupled to the second bus, wherein the first bus is able to be selectively and individually coupled to each of the motors, and wherein the second bus is able to be selectively and individually coupled to each of the motors,
- FIG. 1 is a schematic diagram of an arc resistant synchronous transfer control system 2 for controlling the operation of multiple electric motors according to an exemplary embodiment of the present invention
- FIG. 2 is a front view of arc resistant enclosure of the arc resistant synchronous transfer control system according to an exemplary embodiment of the present invention.
- FIGS. 3 A, 3B and 3C are isometric, front and left side views, respectively, of an arc resistant sub-enclosure forming part of the arc resistant enclosure of FIG . 2.
- fastener refers to any suitable connecting or tightening mechanism expressly including, but not limited to, screws, bol ts and the combinations of bolts and nuts (e.g. , without limitation, lock nuts) and bolts, washers and nuts.
- Coupled together shall mean that the parts are joined together either directly or joined through one or more intermediate parts.
- number shall mean one or an integer greater than one ( ,£,, plurality).
- hard bus As employed herein, the terms “hard bus”, “hard bossed” or “hard bussing” shall refer to a system of one or more electrical conduc tors that makes common connection between a number of circuits or circu it components and that employs metallic, e.g., copper, brass or aluminum, strips or bars that are connected, e.g., bolted, together, as opposed to a cable or cables that are strung together to interconnect a number of circuits or circuit components (which is usually used for field connect! ons).
- metallic e.g., copper, brass or aluminum
- strips or bars that are connected, e.g., bolted, together, as opposed to a cable or cables that are strung together to interconnect a number of circuits or circuit components (which is usually used for field connect! ons).
- FIG. I is a schematic diagram of an arc resistant synchronous transfer control system 2 for controlling the operation of multiple electric motors according to an exempiaty embodiment of the present invention.
- System 2 includes a plurality of electric motors 4. In the illustrated embodiment, five motors 4 (labeled 4A-4E) are provided. It will be understood, however, that more or less motors 4 ma be
- System 2 further includes a main power source 6, which in the exemplary embodiment is a 4160 V, 60 Hz main power line (e.g., the 60 Hz utility supply).
- main power source 6 which in the exemplary embodiment is a 4160 V, 60 Hz main power line (e.g., the 60 Hz utility supply).
- system 2 includes an arc resistant enclosure 8 that is structured to withstand an internal fault without endangering an operator who is standing in front of the equipment.
- arc resistant enclosure 8 is structured to meet IEEE C37.20.7 standards, and thus be arc resistant at the front, sides and rear thereof, and to have the following arc resistant ratings: 50kA - 0.5s, Type 2B.
- System 2 further includes a number of components that are provided in arc resistant enclosure 8.
- system 2 includes a mam bus 10 that is directl coupled to main power source 6. and a secondary bus 12.
- main bus 10 and secondary bus 12 are both hard bussed, and are made of, for example and without limitation, hard copper bus bars.
- the input of a reduced voltage starter device 14 is coupled to main bus 10.
- reduced voltage starter device 14 is a VFD. It will be understood, however, that reduced voltage starter device 14 may also take on other forms, such as a soft starter, or a VFD with a reduced voltage solid state (RVSS) bypass. As is known, this latter implementation employs both a VFD and an integral soft starter in a bypass configuration that allows the system to continue to run (via the soft starter) in the event that the VFD fails. In one particular exemplary embodiment, reduced voltage starter device 14 is an arc resistant VFD. The output of reduced voltage starter device 14 is coupled to an output isolation contactor 16, which in turn is coupled to secondary bus 12,
- each motor 4A-4E is coupled to main bus 10 through an associated bypass contactor 18A-I8E and bypass line 20A-20E.
- Each motor 4A-4E is also coupled to secondary bus 12 through an associated motor select contactor 22A- 22 E and motor select line 24A-24E.
- bypass lines 20A- 20E and motor select lines 24A-24E also hard bussed.
- reduced voltage starter device 14 is a VFD in order to implement a synchronous transfer control system, in system 2, such a VFD accelerates the selected one of the motors 4A-4E to any .frequency the user wants between 0 and 60 Hz.
- This speed control is one of the main advantageous features of a. VFD. in system 2 implemented as a synchronous transfer control system, the VFD is told by the user (through a controller (e.g., PLC) coupled to the VFD) to synchronize with the applied line power on main line 10.
- a controller e.g., PLC
- the VFD then accelerates the selected one of the motors 4A-4E to 60 Hz, and then aligns the phase angle between the line power on main line 10 and the selected one of the motors 4A-4E to 60 Hz.
- the transfer occurs.
- the sequence of operation of system 2 is thus as fol lows for a normal start.
- the user calls for a start of a selected one of the motors 4A-4E.
- motor select contactor 22A-22E of the selected one of the motors 4A-4E is closed, and reduced voltage starter device 14 is started.
- reduced voltage starter device 14 The first action of reduced voltage starter device 14 is to close output isolation contactor 16, This will result in the selected one of the motors 4A-4E being connected to reduced voltage starter device 1 though the closed output isolation contactor 16 and closed motor select contactor 22A-22E. During this process, the bypass contactors 18A-18E remain open. Reduced voltage starter device 14 energizes and ramps the selected one of the motors 4 A -4E. When the ramping is complete, reduced voltage starter device 14 aligns with main bus 10, and closes the bypass contactor 18A-18E of the selected one of the motors 4A-4E, and turns itself off. Finally, output isolation contactor 16 the motor selec t contactor 22A-22E of the selected one of the motors 4A-4E is opened. Reduced voltage starter device 14 is now available to start another one of the motors 4A-4E,
- FIG. 2 is a front view of arc resistant enclosure 8 showing certain components that are provided in arc resistant enclosure 8.
- arc resistant enclosure 8 is made up of a number of a number arc resistant sub-enclosures 9 (labeled 9A-9E in the exemplary embodiment), and an arc resistant sub-enclosures 1 1 , which are described in detail below.
- the arc resistant sub-enclosures 9 and the arc resistant sub-enclosures 1 1 are positioned immediately next to one another to .form arc resistant enclosure 8, with each one of the arc resistant sub-enclosures 9A-9E corresponding to one of the motors 4A-4E.
- FIGS. 3 A, 38 and 3C are isometric, front and left side views,
- Each arc resistant sub-enclosure 9 includes a main housing 26 which houses a number of the components of system 2, and an arc plenum 28.
- Main housing 26 includes a front portion 32, a rear portion 34, a right side portion 36, a left side portion 38, and an open top portion 40.
- Arc plen um 28 is attached to top portion 40 of main housing 26. Front portion 32.
- rear portion 34, right side portion 36, and left side portion 38 each include one or more enclosure members (e.g., a wall or cover with comer bracing) made of a material having arc resistant ratings of 50k A - 0.5s, Type 2B, such as, without limitation, 12 gauge mild (low carbon) steel, in FIGS. 3A and 3B, one such member is removed from front portion 32 in order to show the internal compartment 30 of main housing 26.
- enclosure members e.g., a wall or cover with comer bracing
- Type 2B such as, without limitation, 12 gauge mild (low carbon) steel
- Arc plenum 28 has a front portion 42, a rear portion 44, an open right side portion 46, an open left side portion 48, a top portion 50, and an open bottom portion 52.
- Front portion 42. rear portion 44 and top portion 50 each include one or more enclosure members (e.g., a wall or cover with comer bracing) made of a material having arc resistant ratings of 50kA - 0.5s, Type 2B. suc as, without limitation, 12 gauge mild (low carbon) steel.
- Arc plenum 28 (and therefore internal compartment 30 of main housing 26) is structured to be fluidly connected to a venting/duct system, similar to an HVAC duct, via open right side portion 46 and/or open left side portion 48.
- Arc resistant sub-enclosures 11 is similar in structure to arc resistant sub-enclosure 9 as just described. When arc resistant sub-enclosures 9A-9E and. 1 1 are positioned adjacent one another as shown in FIG. 2, the arc plenums 28 are coupled to one another and then to venting/duct system.
- main bus 10 main bus 10
- secondary bus 12 reduced voltage starter device 14
- output isolation contactor 1 bypass contactors 18A-18E and motor select contactors 22A-22E.
- main bus 10 a portion of main bus 10, a portion of secondary bus 12, reduced voltage starter device 1 , and output isolation contactor 16 are housed within the internal compartment of main housing 26 of arc resistant sub-enclosure 1 1
- main bus 10 a portion of secondary bus 12, a respective one of the bypass contactors 18A-18B and a respective one of motor select contactors 22A-22E are housed within the internal compartment of main housing 26 of each arc resistant sub-enclosure 9.
- Arc resistant enclosure 8 thus functions as an arc resistant enclosure that meets IEEE C37.20.7 standards for system 2.
- hot gasses and/or pressure waves will be vented up main housing 26 and through arc plenum(s) 28 to the associated venting/duct system (and thus away from personnel).
- personnel will be protected/shielded from such hot gasses and/or pressure wa ves by the enclosure members of main housing 26 and arc plenum 28.
- multiple arc resistant enclosures 8 may be placed side by side to one another in a configuration wherein the arc plenums 28 thereof are in communication with one another (the left side portion 48 of one being adjacent the right side portion 46 of another, and so on) so as to provide an escape- ay for hot gasses and/or pressure waves in the event of a failure of one or more of the arc resistant enclosures 8.
Landscapes
- Engineering & Computer Science (AREA)
- Power Engineering (AREA)
- Control Of Multiple Motors (AREA)
- Arc Welding Control (AREA)
- Vertical, Hearth, Or Arc Furnaces (AREA)
- Toys (AREA)
- Plasma Technology (AREA)
Abstract
Description
Claims
Priority Applications (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| MX2016003300A MX2016003300A (en) | 2013-09-20 | 2014-08-19 | Synchronous transfer control system in an arc resistant enclosure. |
| CA2918130A CA2918130A1 (en) | 2013-09-20 | 2014-08-19 | Synchronous transfer control system in an arc resistant enclosure |
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US14/032,895 US20150084553A1 (en) | 2013-09-20 | 2013-09-20 | Synchronous transfer control system in an arc resistant enclosure |
| US14/032,895 | 2013-09-20 |
Publications (2)
| Publication Number | Publication Date |
|---|---|
| WO2015041785A2 true WO2015041785A2 (en) | 2015-03-26 |
| WO2015041785A3 WO2015041785A3 (en) | 2015-05-28 |
Family
ID=51494501
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| PCT/US2014/051610 Ceased WO2015041785A2 (en) | 2013-09-20 | 2014-08-19 | Synchronous transfer control system in an arc resistant enclosure |
Country Status (6)
| Country | Link |
|---|---|
| US (1) | US20150084553A1 (en) |
| CA (1) | CA2918130A1 (en) |
| CL (1) | CL2016000609A1 (en) |
| MX (1) | MX2016003300A (en) |
| PE (1) | PE20160517A1 (en) |
| WO (1) | WO2015041785A2 (en) |
Families Citing this family (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US10033322B2 (en) | 2015-10-30 | 2018-07-24 | Eaton Intelligent Power Limited | Closed-transition variable-frequency drive apparatus and methods |
| KR102253205B1 (en) * | 2016-10-05 | 2021-05-18 | 존슨 컨트롤스 테크놀러지 컴퍼니 | Variable speed drive with secondary winding |
Family Cites Families (11)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| DE2626096C3 (en) * | 1976-06-10 | 1979-05-10 | Siemens Ag, 1000 Berlin Und 8000 Muenchen | Device for starting single or multi-phase squirrel cage motors |
| JPH01278281A (en) * | 1988-04-28 | 1989-11-08 | Toshiba Corp | Automatic controller for dust removing facility |
| DE10114742C1 (en) * | 2001-03-20 | 2002-11-14 | Siemens Ag | Electrical system with pressure relief duct |
| JP4703426B2 (en) * | 2006-02-15 | 2011-06-15 | 三菱電機株式会社 | Switchgear |
| US7821774B2 (en) * | 2008-02-12 | 2010-10-26 | Siemens Industry, Inc. | Mounting base with arc plenum |
| US8242395B2 (en) * | 2008-02-21 | 2012-08-14 | Siemens Industry, Inc. | Circuit breaker compartment arc flash venting system |
| US8952252B2 (en) * | 2010-10-22 | 2015-02-10 | Rockwell Automation Technologies, Inc. | Arc resistant electrical enclosure |
| US8492662B2 (en) * | 2011-02-28 | 2013-07-23 | Abb Inc. | Arc-resistant dry type transformer enclosure having arc fault damper apparatus |
| KR101422905B1 (en) * | 2012-01-30 | 2014-07-23 | 엘에스산전 주식회사 | Meduim voltage inverter control apparatus and meduim voltage inverter system |
| US8842421B2 (en) * | 2012-10-22 | 2014-09-23 | Central Electric Manufacturing Company | Arc-resistant switchgear enclosure with latch for vent flap |
| US8785770B2 (en) * | 2012-11-14 | 2014-07-22 | Central Electric Company | Arc-resistant switchgear enclosure with vent arrangement of a lower compartment |
-
2013
- 2013-09-20 US US14/032,895 patent/US20150084553A1/en not_active Abandoned
-
2014
- 2014-08-19 MX MX2016003300A patent/MX2016003300A/en unknown
- 2014-08-19 WO PCT/US2014/051610 patent/WO2015041785A2/en not_active Ceased
- 2014-08-19 CA CA2918130A patent/CA2918130A1/en not_active Abandoned
- 2014-08-19 PE PE2016000380A patent/PE20160517A1/en not_active Application Discontinuation
-
2016
- 2016-03-15 CL CL2016000609A patent/CL2016000609A1/en unknown
Also Published As
| Publication number | Publication date |
|---|---|
| MX2016003300A (en) | 2016-10-28 |
| CL2016000609A1 (en) | 2016-12-16 |
| US20150084553A1 (en) | 2015-03-26 |
| PE20160517A1 (en) | 2016-05-28 |
| CA2918130A1 (en) | 2015-03-26 |
| WO2015041785A3 (en) | 2015-05-28 |
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