Description
hardware flow control. It is an ideal choice in the field of industrial automation.
Caijing: Can we say that ABB is part of Made in China 2025?
Spiesshofer: Of course, we are a very important part. We were involved in coming up with this idea and we will be deeply involved in making it happen. Now we have
about 18,000 employees in China, with many manufacturing plants and large R&D centers. We also have a software center in China to develop artificial intelligence technology
used on robots. At present, China not only has a market for ABB, but also has an excellent team that I am very proud of.
Caijing: The current problem is that Made in China 2025 has posed a challenge to Europe and the United States. They believe that they need to pay close attention to
it. The current trade policy of the United States is also very targeted at Made in China 2025. How do you view this criticism?
Spiesshofer: I don’t want to comment too much on policy. China”s competitiveness has grown significantly over the past few decades, but the rest of the world has
not stood still. Take Europe”s technological development, for example. Europe is playing a leading role in the fourth industrial revolution.
I want to have a level playing field and give everyone a chance. It is true that China is an economic power, and there are other economic powers in the world.
The world is big enough to accommodate the friendly coexistence of all these forces.
The Industrial Internet is inseparable from industrial control
Caijing: Regarding digitization, there are two questions. Why digitization? How to digitize?
Spiesshofer: People have been benefiting from technologies that improve productivity. Through digitalization, we can improve productivity very well. We introduce a closed
loop of “perception, analysis, and action” to sense through digital technologies such as sensors , communication devices, and connected devices. We learn the operation status
of assets through sensor technology, upload it to the cloud, and summarize the information. After we have the information, we need to analyze the information. AI technology plays
an important role in this process, that is, intelligent algorithms for analyzing data. Then comes the action part, where you need to get into the control loop of an
industrial process or maintenance plan to make it work. Like AI, we should not be afraid of digitalization, but rather see it as an opportunity to create prosperity and wealth.
Caijing: Regarding the Industrial Internet, GE, which proposed this concept, has changed its CEO and its performance is poor. Does this mean that its development is
not going smoothly? How do you see the future of the Industrial Internet?
Spiesshofer: If used well, the industrial Internet can be very effective. To review what I said: perception, analysis and action are required. Our strategy is different from
GE”s strategy. They stop after sensing and analyzing, while we still have an action phase. Through our control system, the Industrial Internet is connected to the control loop
through intelligent algorithms, which can create a lot of value for customers.
ABB is one of the two major industrial control technology companies in the world. Siemens is the leader in the discrete industry. We are second only to Siemens.
In the process industry, ABB ranks first and Siemens second. This is the biggest difference between ABB and GE: GE does not control the circulation or has no control
ability. It is like you are a doctor. You only diagnose high fever and give the patient your suggestions, but ABB not only gives suggestions, but also helps patients implement the suggestions. .
Caijing: You also mentioned the concept of global energy internet. Is this a future concept or something that is already happening? What is its value?
Spiesshofer: The energy challenge facing people today is how to provide predictable, high-quality, low-carbon baseload energy.
There are different ways to achieve this, bringing together different renewable and conventional energy sources, plus nuclear power. All of the previously
mentioned energy sources can also be connected together through a globally interconnected power grid. We must also incorporate active demand-side
management and intelligent demand-side optimization to achieve peak-cutting effects through demand-side model optimization.
Overall, there will be a globally interconnected power system in the future that will operate completely differently with demand-side
dynamics ranging from long distances all the way to local. The roof of your house is equipped with solar energy. It may be a power station in the
morning, a power user in the afternoon, and it may be an energy storage power station in the evening because you are charging your electric car. Optimizing
all of this is what I call the Internet of Power, and that”s what we”re working on.
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MTL838C MTL instrument analog transmitter
810-099175-011 LAM Interface board module
DSQC346G 3HAB8101-706B drive unit
5PC810. SX05-00 APC810 system unit
XV 430-12TSB-1-10 EATON 12.1″, TFT color
XV440-10TVB-X-13-1 EATON 10.4 “, TFT color
XV 430-10TVB-1-10 EATON 10.4 inches
XV442-57CQB-X-13-1 ESTON 5.7 inches
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XV-440-12TVB-1-50 EATON
XV 440-12TSB-1-10 ESTON Touch panel
XV-440-12TVB-1-50 EATON Man-machine interface
XV 440-12TSB-X-13-1 ESTON 12.1″, TFT Color, i/r, Ethernet, USB, RS232, CANopen
XV442-57CQB-1-10 EATON 5.7 inch, Color, i/r, Ethernet, USB, RS232, CANopen
VE3008 CE3008 KJ2005X1-MQ1 12P6381X042 MQ Controller
05074-A-0122 05704-A-0121 05704-A-0131 honeywell Quad Relay Interface Card
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P0926PA FOXBORO FBM224, FBM230, and FBM231 terminals
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P0916FK FOXBORO cable
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LENZE EPL10200-W includes EPZ-10203 CANPT010W3E
UNS0119A-Z,V1 3BHE030579R0001 Automatic voltage regulator
UNITROL 1020 3BHE030579R0003 Indirect Excitation System
UNS0119A-Z,V1 3BHE030579R0001 Automatic voltage regulator
LAIB V3.0_A00 034STN1-01-300-RS
LAIB V3.0_A00 034STN1-00-300-RS
ATKB_V5.0_A01 03ZSTI4-01-501
ATKB_V5.0_A01 03ZSTI4-00-501
FPB_V3.0_A01 03ZSTJ1-00-301-RS
DSPB_V4.0_A02 03ZSTI7-00-402-RS
PUIM V2.0 034STM4-00-200-RS
DUDT_DETECTION_V2.0_A01 03ZSTJ0-00-201-RS
IPB PCB V2.0_A01 03ZSTL6-00-201-RS printed circuit board
IPB PCB V2.0_A01 03ZSTL6-00-201-RS printed circuit board
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5SHY3545L0010 3BHB013088R0001 3BHE009681R0101 GVC750BE101
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REXROTH HDS02.2-W040N-HS12-01-FW Servo controller
DEUBLIN 904-120-188
810-234640-312 LAM Printed circuit board
SAIA 52030C10 PCD2.W200 Analog input module
VM600 XIO16T 620-002-000-113 620-003-111-112 VM600 XIO16T
200-595-031-111 VM600 CPUM modular CPU card
VM600 MPC4 200-510-071-113 200-510-111-034 machinery protection module
VM600 XMV16 600-003 620-001-001-116 condition monitoring module for vibration
VM600 IOC4T 200-560-000-018 200-560-101-015 voltage-drop adaptor
VM600 XIO16T 620-002-000-113 620-003-111-112 extended condition monitoring modules
NI-9853 C series CAN interface module
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