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Monday, Jul 26, 2021

Japan sets internet speed record by transferring 319 Tb/s over 3,001 km

Japan sets internet speed record by transferring 319 Tb/s over 3,001 km

The Japanese research institute noted that the result from the latest internet speed test will help the realisation of new communication systems that can support the new “bandwidth hungry services.”
Researchers in Japan have demonstrated an internet speed of 319 terabits per second, setting a world record. A team of researchers at Japan’s National Institute of Information and Communications Technology (NICT) used advanced fiber optic technology with a 4-core optical fibre of standard outer diameter of 0.125 mm to perform the speed test, breaking the previous record of 178 Tb/s set by engineers in Japan and Britain a year ago.

To achieve the record speed, the researchers constructed a recirculating transmission loop experimental set-up by combining two kinds of rare-earth-doped fiber amplifiers. The combination of erbium and thulium doped-fiber amplifiers and distributed Raman amplification enabled a long-distance transmission over 3,001 km.

“The 4-core MCF with standard cladding diameter is attractive for early adoption of SDM fibers in high-throughput, long-distance links, since it is compatible with conventional cable infrastructure and expected to have mechanical reliability comparable to single-mode fibers,” the Japanese research institute said in a paper published earlier this month.

NICT stressed that it was crucial to demonstrate how new fibers can meet the demand of apparent “explosive increase” from new data services. The research institute further noted that the result from the latest internet speed test will help the realisation of new communication systems that can support the new “bandwidth hungry services,” adding that they will continue to explore ways to further increase the transmission capacity of “low-core-count multi-core fibers and other novel SDM fibers.”

“Further, we will work to extend the transmission range to trans-oceanic distances,” NICT said.

The research paper was published at the International Conference on Optical Fiber Communication which was held virtually from June 6-11.
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