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Showing posts with the label resiliency.

Anatomy Of A Subsea Cable Landing & Backhaul: Design & Good Practice

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This is the Peace cable's Marseille backhaul. It illustrates standard landing architecture as well as good network design. First of all, the cable comes ashore outside Marseille Port's own cable landing facilities for the sake of physical diversity and resilience. Always put some distance between a cable and others if possible. This increases the cable's value and demand for its capacity because diversity means adding it to the network portfolio improves its resilience. It is analogous to the role of diversification in a financail portfolio. Like all other subsea cables, Peace terminates in a beach manhole where it was spliced to a terrestrial fibre cable that also contains a power conductor just like the subsea cable. Then the terrestrial fiber goes to an Orange 'CLS', really just a power feed hut. From there the cable becomes part of a fully diverse fibre ring that includes dual entrances into MRS2 where most of the cable's SLTEs are kept. Most likely this fib...

The Subsea Cable Class of 2028: Candle

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Candle is one of the more interesting Intra-Asian cables to go live over the next several years. It is the first 24 fibre pair system to serve this region. Total transmission capacity is 570 Tbps. This makes it one of the highest capacity cables on the planet. Like Apricot, Candle avoids the South China Sea due to Beijing's territorial claims and permitting demands. The main trunk links the inseparable couple of Tokyo and Singapore with branches into the Philippines, Taiwan, Indonesia, and Malaysia. Consortium leaders include META, Softbank, and Telekom Malaysia. This project, like Apricot, exemplifies the geopolitics of American-Chinese rivalry. Hyperscalers avoid China and HK and exchange traffic at neutral Singapore. However, the routing is shorter than Apricot because Candle is deployed at the edge of the South China Sea as opposed to a long detour around Indonesia and up the East Coast of the Philippines. Like Apricot, Candle offers physical diversity to the usual suspects mak...

Subsea Cable Nightmares: Elm Street Comes To The Middle East

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In a conversation I had today with the editor of Capacity Media, I suggested the top challenge for the global subsea cable industry over the next five years is how to thread intercontinental traffic through the Middle East to Europe, India, and Asia. Trump's attack on Iran has shut down the Persian Gulf, which many subsea cable consortiums viewed as their best hope for a Red Sea bypass route. If wet segment outages happened, there would be no way to repair them today, just like the Red Sea off Yemen. Thank you, Donald.  In fact, SWM6 goes up the Persian Gulf and lands at Bahrain. It is linked to fibre along a highway from Bahrain to the cable landing station in Saudi's Arabia's resort city of Jeddah. So the SMW6 bypass uses the Persian Gulf up to Bahrain, traverses the Desert, and then rides the Red Sea to an Egyptian CLS. In addition, persistent rumors suggest that Blue-Raman will traverse Kuwait as part of a terrestrial route to reach the Red Sea. I don...

Google & Nigerian Government Discussing New Subsea Cable

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Few details are available at this point. It has been clear to me for some time that the 2Africa and Equiano networks are insufficient to meet growing African Internet traffic. This reflects two factors. First, the limited number of Equiano landings: Togo, Nigeria, Namibia, and South Africa. Secondly, the 2Africa has only 180 Tbps of capacity, but serves 17 African states. Moreover, it also serves many Middle East countries, Pakistan, and India. The Nigerian government is concerned that the country lacks subsea resiliency. Published reports hint at its desire for a new route, but it is not obvious what it would be. One possibility is a direct US-Nigeria link perhaps connecting Atlanta or Ashburn Equinix to Lagos. Or perhaps a Nigeria to France or Spain direct link. Bloomberg article on subject: https://www.bloomberg.com/news/articles/2025-12-23/nigeria-in-advanced-talks-with-google-for-new-undersea-cable. 

Google Cable Update: Tabua Lands On Australia's Sunshine Coast

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Tabua is part of Google's grand Pacific Initiative, a project to build a mesh-like web of subsea cables connecting Japan, the US, Australia, and many Pacific islands. The islands include Guam, Fiji, Hawaii, and French Polynesia. These islands play a crucial role: they provide power to keep throughput at higher levels than otherwise possible. Another key role for the islands is as telecom switching hubs with each cable landing station serving several high capacity cables.  Tabua is a standard 16 fibre pair spatial division multiplexing cable with two branches landing on the Australian and American sides. Design throughput is 17 Tbps per fibre pair. This dual branch approach has become popular because if the Queensland branch is damaged, traffic can be switched to the New Wales CLS with fibre linking the two cable landing stations. Similarly, on the US side, it lands in Hawaii and also Los Angeles. If the Hawaii/LA segment fails, then the traffic can be routed via other cables landin...

Bude, UK Subsea Cable Landscape & Resiliency Concerns

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A total of 9 cables land on the beaches near the small town of Bude, UK. There are four operational cable landing stations serving them in the Bude, UK area: two Vodafone CLS, a Colt (former Lumen) CLS, and a BT facility. Please click on https://lnkd.in/gGAP3QMA for a plethora of photos of the cable landing stations. The map illustrates the tendency for telecommunications networks to lack adequate physical diversity to ensure resiliency. Sometimes a laissez faire regulation is not the right approach. Most back haul fibre from the cable landing stations to London probably traverses the single road parallel to the beaches. See below.  When I worked at Hibernia Atlantic as an exclusive sales contractor, we cited the concentration of cables at Highbridge and Bude as good reasons to purchase capacity on the Hibernia North & South cables. North lands several hundred kilometers above Cornwall and at Halifax on the North American side. It was a compelling sales ptich. These cables toda...

Anjana: The Atlantic's New Leviathan

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Meta's Anjana cable sets an Atlantic bandwidth record with 24 fibre pairs each transmitting 20 terabits per second for a total of nearly a half petabit. This huge capacity reflects its spatial division multiplexing (SDM) design. Traditional subsea cable designs maximize capacity per pair, but this leads to nonlinear signal distortions once a threshold is exceeded. Hence additional power to boost the rate above the threshold yields only small gains. This inefficient use of power limits fiber pair counts to 8 or less per cable with most cables rarely exceeding 150 Tbps. In contast, SDM increases the total bandwidth punch by operating each pair at lower transmission rates to avoid these nonlinear signal distortions. In turn, the lower transmission rates free up power to support enough more pairs to sharply raise total cable throughput, which ranges from 200 Tbps to a half petabit per second.  Another notable feature of Anjana is that it lands at Myrtle Beach, South Carolina, and Santa...