Description
IMMFP03 Использование параметров ABB
Double-decker train uses ABB traction transformer for the first time
Rapid urbanization has brought about problems such as traffic congestion, air pollution and population expansion, forcing railway operators and infrastructure providers
to transport more passengers on already busy rail transit systems. One solution to this outstanding contradiction is to increase the passenger capacity of existing
transportation lines.
On July 22, 2011, ABB , the world”s leading power and automation technology group, recently announced that Bombardier designed and manufactured the world”s
first traction transformer that can be installed on the top of the locomotive for its new generation double-deck EMU train . This train can be used in commuter, regional
and intercity rail transit. The use of double-decker trains is a good way to increase passenger capacity. This type of train has the best car seat ratio planning, and the improved acceleration performance
of the train also effectively shortens the travel time between stations and expands the coverage of train services.
The latest Bombardier double-decker trains have an ABB traction transformer installed on the top. They adopt an extra-wide body and better seat planning. The
number of seats per meter of the body ranges from 5 to 5.8, providing more space for passengers. Compared with similar models currently on the market, Bombardier”s
new trains can carry 35% more passengers.
ABB and Bombardier have a long-standing relationship in the field of traction equipment for regional commuter trains, high-speed trains and railway locomotives.
The traction transformer converts the grid voltage from the power grid above the train into the lower voltage required by the train”s traction system, and delivers it to the train”s
driving equipment, as well as lighting, heating, ventilation systems, on-board LCD displays, information systems and other electrical system .
In order to ensure the continuity of railway transportation and the effectiveness and reliability of the highest level of instant power supply, ABB specially designed
traction transformers for OMNEO trains. Compared with the traction transformer on the single-layer SP AC IUM* EMU train provided by Bombardier for the Francilien line
in the Paris region of France , the power supply capacity of the new transformer is increased by 25%. To save space, the roof-mounted traction system combines the
separate cooling systems for the converter and transformer. This design reduces the number of fans while reducing cost
and equipment weight. In addition, in order to save space and facilitate equipment maintenance and control, the transformer will be installed directly on the top channel
of the vehicle.
Bombardier worked with ABB to complete the design work, and the cabin baffles were installed on the inverter , cooling system and transformer to ensure that these
components fit perfectly into the arc-shaped roof and are difficult to see from the outside after installation. In order to solve the problem of the high center of gravity of the
double-decker train carriage, the transformer has also been designed accordingly to evenly distribute the weight of the equipment.
Swiss ABB will build the largest solar power plant in Northern Europe
Swiss power and automation technology group ABB announced on August 11 that it has built the largest solar power station in Northern Europe at its
low-voltage AC drive plant in Finland . The total investment in the entire solar power station project is approximately 500,000 euros, part of which comes from
the Finnish government. renewable energy investment fund.
ABB Finland”s low-voltage AC transmission plant is located in Helsinki. This solar power station is located on the roof of the factory and has a power
of 181 kilowatts. The solar power generated is mainly used to charge the factory”s forklift truck batteries and reduce the peak load of the factory”s electricity consumption.
Antti Suontausta, Senior Vice President of ABB”s low-voltage AC drives business, said: “This solar power generation system fully demonstrates the
benefits of distributed power generation near power consumption areas. Solar power generation can bring high added value to users, especially for
commercial and industrial applications . For buildings, solar power generation can reduce the building’s peak power load.”
Finland”s sunshine is not very abundant, but this solar power station can take full advantage of the region”s long sunshine hours in summer. It is
expected to generate 160,000 kilowatt hours of electricity per year, which is equivalent to the annual use of 30 local households that do not use electric
heating equipment. power. This solar power will be directly integrated into the factory power grid to charge the forklift trucks in the factory, and the excess
power can also be used by other equipment.
The solar power station uses ABB”s latest string inverters and central inverters, which are designed and produced by ABB”s transmission plant in
Helsinki. This is their first application in Finland. ABB solar inverters are mainly used to convert DC power produced by solar panels into high-quality
AC power and integrate it into the power grid.
1756-PA75 Allen-Bradley Redundant DC power module
1756-PA72 Allen-Bradley Standard power supply
1756-L73XT Allen-Bradley ControlLogi-XT controller
1756-L61 Allen-Bradley ControlLogix controller
1756-CNB Allen-Bradley interface module
1747-L542 Allen-Bradley SLC 5/04 processor
1747-L553 Allen-Bradley SLC 5/05 processor
1747-L541 Allen-Bradley SLC 5/04 processor
1747-CP3 Allen-Bradley programmer cable
1747-ASB Allen-Bradley remote I/O adapter module
1747-ACNR15 Allen-Bradley Control network input/output adapter
1746-P2 Allen-Bradley SLC 500 power supply
1746-P1 Allen-Bradley SLC 500 power supply
1746-OX8 Allen-Bradley SLC 500 digital contact output module
1746-OW16 Allen-Bradley SLC 500 digital contact output module
1746-OV16 Allen-Bradley SLC 500 discrete sinking output module
1746-NR8 Allen-Bradley resistance temperature detector (RTD)/resistance module
1746-NO4V Allen-Bradley SLC 500 analog output module
MCP750 MOTOROLA single-slot hot-swappable CompactPCl board
1746-IB16 Allen-Bradley Medium density DC input module
1746-HSCE Allen-Bradley SLC 500 system high-speed counter module
1746-A7 Allen-Bradley SLC 500 chassis
1440-RMA00-04RC Allen-Bradley Input output module
140NOE77101 Schneider Ethernet TCP/IP module
30V4060 RELIANCE 30 HP GV3000/SE AC drive
DSQC646 3HAC026271-001 ABB ELAN EPS unit
3HAC17484-8108 ABB Rotate AC motor M8
0-60031-5 RELIANCE input/output resolver drives the PMI module
0-60028-2 RELIANCE gate drive interface module
0-60023-5 RELIANCE AC power technical module
0-60021-4 RELIANCE PMI processor
00-117-336 KUKA Multi-function board card
TBF120/7R PARKER amplifier 120V/7A torque resolver drives the servo
SI485/422 21809 KEBA Output card KEBA
S7820A1007 HONEYWELL Remote reset module
R7861A1026 HONEYWELL Ultraviolet flame amplifier
P0400VP CMP10 FOXBORO Communication processor 10 module
Kongsberg MRU-M-SU1 Motion reference unit
MTL831B MTL Multichannel temperature transmitter
Kongsberg MRU-2 Angular rate gyroscope
IPM02-P0904HA FOXBORO I/A series industrial power module 2
FBM242 RH916ND Foxboro discrete output interface module
BMXAMO0802 Schneider 8 Output analog output module X80
1030211 SICK Circuit board
65040-PACV-AYU2 VAT Vakuumventile AG Valve
2117-001-105 DEUBLIN Self supporting screw
1756-IB16 Allen-Bradley Controllogix l/O module
140DDO35300 Schneider Source output module
8V1090.00-2 B&R SERVO DRIVE
8AC123.60-1 B&R SS ENCODER INTERFACE MODULE
0100-00003 AMAT Stepper Drive
8AC110.60-2 B&R INTERFACE MODULE
330180-51-00 Bentley Nevada 3300XL preloader Sensor
XBTGK2120 Schneider Terminal keyboard
XBTFC044310 Schneider Touch panel
1TGE120028R0010 ABB Human body system interface
XBTF023110 Schneider Operator interface 9.5 GRPGC TRMNL keyboard 1T
XBTF034610N Schneider Touch panel
VREL-11 SENTRY Double needle pressure reducing valve
VT3002-2X/48F Rexroth Stand for amplifier
VMIACC-0584 GE Controller module
TU848 3BSE042558R1 ABB Terminal module
UAD155A0111 3BHE029110R0111 ABB Distributed control system module
TSXPBY100 Schneider PROFIBUS DP V0 – Module suite
TSXP575634M Schneider UNITY Processor
TSXMRPF008M Schneider Memory card Memory card
TS2640N321E64 TAMAGAWA Rotating transformer
TSX07301012 Schneider TSX-07 Brick input module
SNAP-AITM-2 OPTO 22 S-type thermocouple analog input module
SKP326-3 EPSON Power board module
SC6M-80GC03 ADTRON Multi-channel programmable power card
T161-902A-00-B4-2-2A MOOG Servo valve controller
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