The Fort Worth Press - Europe's fastest supercomputer to boost AI drive

USD -
AED 3.672504
AFN 63.000368
ALL 82.776172
AMD 376.396497
ANG 1.790083
AOA 917.000367
ARS 1391.503978
AUD 1.422273
AWG 1.8025
AZN 1.70397
BAM 1.687271
BBD 2.010611
BDT 122.494932
BGN 1.709309
BHD 0.377087
BIF 2954.923867
BMD 1
BND 1.276711
BOB 6.898158
BRL 5.313404
BSD 0.998318
BTN 93.32787
BWP 13.612561
BYN 3.028771
BYR 19600
BZD 2.007764
CAD 1.37265
CDF 2275.000362
CHF 0.78844
CLF 0.023504
CLP 928.050396
CNY 6.886404
CNH 6.906095
COP 3669.412932
CRC 466.289954
CUC 1
CUP 26.5
CVE 95.125739
CZK 21.149204
DJF 177.768192
DKK 6.457504
DOP 59.25894
DZD 132.24804
EGP 51.758616
ERN 15
ETB 157.330889
EUR 0.862704
FJD 2.21445
FKP 0.75164
GBP 0.749681
GEL 2.71504
GGP 0.75164
GHS 10.882112
GIP 0.75164
GMD 73.503851
GNF 8750.377432
GTQ 7.646983
GYD 208.85994
HKD 7.83525
HNL 26.423673
HRK 6.511304
HTG 130.966657
HUF 339.680388
IDR 16956.2
ILS 3.109125
IMP 0.75164
INR 94.01055
IQD 1307.768624
IRR 1315625.000352
ISK 124.270386
JEP 0.75164
JMD 156.839063
JOD 0.70904
JPY 159.240385
KES 129.327524
KGS 87.447904
KHR 3989.129966
KMF 427.00035
KPW 899.870128
KRW 1505.310383
KWD 0.30657
KYD 0.831903
KZT 479.946513
LAK 21437.260061
LBP 89404.995039
LKR 311.417849
LRD 182.685589
LSL 16.84053
LTL 2.95274
LVL 0.60489
LYD 6.39089
MAD 9.328473
MDL 17.385153
MGA 4162.53289
MKD 53.176897
MMK 2099.940821
MNT 3585.542519
MOP 8.05806
MRU 39.961178
MUR 46.510378
MVR 15.460378
MWK 1731.096062
MXN 17.898204
MYR 3.939039
MZN 63.903729
NAD 16.84053
NGN 1356.250377
NIO 36.733814
NOK 9.569995
NPR 149.324936
NZD 1.712622
OMR 0.384504
PAB 0.998318
PEN 3.451408
PGK 4.309192
PHP 60.150375
PKR 278.721304
PLN 3.69475
PYG 6520.295044
QAR 3.65052
RON 4.401504
RSD 101.324246
RUB 82.822413
RWF 1452.529871
SAR 3.754657
SBD 8.05166
SCR 13.69771
SDG 601.000339
SEK 9.344038
SGD 1.282504
SHP 0.750259
SLE 24.575038
SLL 20969.510825
SOS 570.504249
SRD 37.487504
STD 20697.981008
STN 21.136177
SVC 8.734849
SYP 110.536894
SZL 16.845965
THB 32.908038
TJS 9.588492
TMT 3.51
TND 2.948367
TOP 2.40776
TRY 44.252504
TTD 6.773066
TWD 32.036704
TZS 2595.522581
UAH 43.73308
UGX 3773.454687
UYU 40.227753
UZS 12170.987361
VES 454.69063
VND 26312
VUV 119.352434
WST 2.727514
XAF 565.894837
XAG 0.014693
XAU 0.000222
XCD 2.70255
XCG 1.799163
XDR 0.703792
XOF 565.894837
XPF 102.885735
YER 238.603589
ZAR 17.12748
ZMK 9001.203584
ZMW 19.491869
ZWL 321.999592
  • RBGPF

    -13.5000

    69

    -19.57%

  • CMSD

    -0.2420

    22.658

    -1.07%

  • BCC

    -1.5600

    68.3

    -2.28%

  • BCE

    0.0600

    25.79

    +0.23%

  • AZN

    -5.3300

    183.6

    -2.9%

  • GSK

    -0.5300

    51.84

    -1.02%

  • RIO

    -2.5000

    83.15

    -3.01%

  • NGG

    -3.5400

    81.99

    -4.32%

  • BTI

    -1.3500

    57.37

    -2.35%

  • CMSC

    -0.2000

    22.65

    -0.88%

  • RELX

    -0.4600

    33.36

    -1.38%

  • VOD

    -0.0900

    14.33

    -0.63%

  • RYCEF

    -1.2600

    15.34

    -8.21%

  • JRI

    -0.3900

    11.77

    -3.31%

  • BP

    -1.0800

    44.78

    -2.41%

Europe's fastest supercomputer to boost AI drive
Europe's fastest supercomputer to boost AI drive / Photo: © AFP/File

Europe's fastest supercomputer to boost AI drive

Europe's fastest supercomputer Jupiter is set to be inaugurated Friday in Germany with its operators hoping it can help the continent in everything from climate research to catching up in the artificial intelligence race.

Text size:

Here is all you need to know about the system, which boasts the power of around one million smartphones.

- What is the Jupiter supercomputer? -

Based at Juelich Supercomputing Centre in western Germany, it is Europe's first "exascale" supercomputer -- meaning it will be able to perform at least one quintillion (or one billion billion) calculations per second.

The United States already has three such computers, all operated by the Department of Energy.

Jupiter is housed in a centre covering some 3,600 metres (38,000 square feet) -- about half the size of a football pitch -- containing racks of processors, and packed with about 24,000 Nvidia chips, which are favoured by the AI industry.

Half the 500 million euros ($580 million) to develop and run the system over the next few years comes from the European Union and the rest from Germany.

Its vast computing power can be accessed by researchers across numerous fields as well as companies for purposes such as training AI models.

"Jupiter is a leap forward in the performance of computing in Europe," Thomas Lippert, head of the Juelich centre, told AFP, adding that it was 20 times more powerful than any other computer in Germany.

- How can it help Europe in the AI race? -

Lippert said Jupiter is the first supercomputer that could be considered internationally competitive for training AI models in Europe, which has lagged behind the US and China in the sector.

According to a Stanford University report released earlier this year, US-based institutions produced 40 "notable" AI models -- meaning those regarded as particularly influential -- in 2024, compared to 15 for China and just three for Europe.

"It is the biggest artificial intelligence machine in Europe," Emmanuel Le Roux, head of advanced computing at Eviden, a subsidiary of French tech giant Atos, told AFP.

A consortium consisting of Eviden and German group ParTec built Jupiter.

Jose Maria Cela, senior researcher at the Barcelona Supercomputing Center, said the new system was "very significant" for efforts to train AI models in Europe.

"The larger the computer, the better the model that you develop with artificial intelligence," he told AFP.

Large language models (LLMs) are trained on vast amounts of text and used in generative AI chatbots such as OpenAI's ChatGPT and Google's Gemini.

Nevertheless with Jupiter packed full of Nvidia chips, it is still heavily reliant on US tech.

The dominance of the US tech sector has become a source of growing concern as US-Europe relations have soured.

- What else can the computer be used for? -

Jupiter has a wide range of other potential uses beyond training AI models.

Researchers want to use it to create more detailed, long-term climate forecasts that they hope can more accurately predict the likelihood of extreme weather events such as heatwaves.

Le Roux said that current models can simulate climate change over the next decade.

"With Jupiter, scientists believe they will be able to forecast up to at least 30 years, and in some models, perhaps even up to 100 years," he added.

Others hope to simulate processes in the brain more realistically, research that could be useful in areas such as developing drugs to combat diseases like Alzheimer's.

It can also be used for research related to the energy transition, for instance by simulating air flows around wind turbines to optimise their design.

- Does Jupiter consume a lot of energy? -

Yes, Jupiter will require on average around 11 megawatts of power, according to estimates -- equivalent to the energy used to power thousands of homes or a small industrial plant.

But its operators insist that Jupiter is the most energy-efficient among the fastest computer systems in the world.

It uses the latest, most energy-efficient hardware, has water-cooling systems and the waste heat that it generates will be used to heat nearby buildings, according to the Juelich centre.

P.McDonald--TFWP