Earlier quoted context omitted.
A truck full of storage volumes can have a higher bandwidth than fiber. Just really bad latency.
Interesting how the analogy progressed over the years from "a station wagon filled with tapes" to "a truck full of storage volumes". An A380 filled with micro SD cards would likely beat any conceivable fiber network in bandwidth, if not latency.
IP over Avian Carriers RFC 1149 event (2001)
31–38 of 38 posts
Re: IP over Avian Carriers RFC 1149 event (2001)
#32Earlier quoted context omitted.
A truck full of storage volumes can have a higher bandwidth than fiber. Just really bad latency.
Interesting how the analogy progressed over the years from "a station wagon filled with tapes" to "a truck full of storage volumes". An A380 filled with micro SD cards would likely beat any conceivable fiber network in bandwidth, if not latency.
Re: IP over Avian Carriers RFC 1149 event (2001)
#33Not so funny at times: an article from 2009, "In Africa, A Pigeon Transfers Data Faster Than The Internet": * https://www.wired.com/2009/09/in-africa-a-pigeon-transfers-d... * https://spectrum.ieee.org/carrier-pigeon-beats-internet-
A truck full of storage volumes can have a higher bandwidth than fiber. Just really bad latency.
Re: IP over Avian Carriers RFC 1149 event (2001)
#34RFC 1149 was updated in RFC 6214 [1] to support IPv6 but adoption has been painstakingly slow among avian ISPs. [1]: https://datatracker.ietf.org/doc/html/rfc6214
Re: IP over Avian Carriers RFC 1149 event (2001)
#35> with ping times varying from 3211 to 6389 seconds. I guess this is a new record for ping times… Hmm, T-mobile's network comes close, but not quite that high, I think. /s Somewhat more seriously, I have seen ping times approaching 20,000 ms on their network. Given the light-distance to the moon is ~1.3 seconds, this ping clearly went significantly further than the moon's orbit, and back; very clearly some routes nee…
Voyager 1 is further away and still sending data, although I don't think that it has received commands for a very long time.
[1] https://www.forbes.com/sites/startswithabang/2020/11/04/voya...
Re: IP over Avian Carriers RFC 1149 event (2001)
#36> with ping times varying from 3211 to 6389 seconds. I guess this is a new record for ping times… Hmm, T-mobile's network comes close, but not quite that high, I think. /s Somewhat more seriously, I have seen ping times approaching 20,000 ms on their network. Given the light-distance to the moon is ~1.3 seconds, this ping clearly went significantly further than the moon's orbit, and back; very clearly some routes nee…
There are some instances of real data taking much more than 6,389 seconds to travel. Voyager 2 was contacted in November 2020[1], being at the time 18.8 billion km away from Earth. Light takes about 62,000 seconds or 17h25m to travel this distance… each way! Almost a 35-hour ping. Voyager 1 is further away and still sending data, although I don't think that it has received commands for a very long time. [1] https://w…
Re: IP over Avian Carriers RFC 1149 event (2001)
#37Not so funny at times: an article from 2009, "In Africa, A Pigeon Transfers Data Faster Than The Internet": * https://www.wired.com/2009/09/in-africa-a-pigeon-transfers-d... * https://spectrum.ieee.org/carrier-pigeon-beats-internet-
Re: IP over Avian Carriers RFC 1149 event (2001)
#38Not so funny at times: an article from 2009, "In Africa, A Pigeon Transfers Data Faster Than The Internet": * https://www.wired.com/2009/09/in-africa-a-pigeon-transfers-d... * https://spectrum.ieee.org/carrier-pigeon-beats-internet-
Strap the pigeon with 100 1TB microSD cards (~250 mg per card) and the bandwidth will approach the transfer speed of the microSD card itself — nearly gigabit speed for UHS-III cards.