Network Working Group Poorer Richard
Request for Comments: 1216 Almanac Institute
Prof. Kynikos
Miskatonic University
1 April 1991
Gigabit Network Economics and Paradigm Shifts
1. Introduction
The history of computer communication contains many examples of efforts to align the capabilities of processors to that of communication media. Packet switching is the classic case of a careful tradeoff between the costs of memory, processing, and communications bandwidth.
2. Contemporary Network Economics
Recent cost estimates predict a continuing decline in the cost for processing, memory, and communication. One recent projection put the decline for $/bit and $/MIP at 99% per decade and put the decline for $/bps at 90% per decade. Scalable parallel processor designs may accelerate the cost declines for CPU and memory, but no similar accelerated decline should be expected in the cost of communications. Such a decline would imply eventual declines in the cost of 56Kbps service used for voice, resulting in a negative rate of return for telecommunications carriers, an unlikely eventuality even if free- market forces are carried to their logical extreme.
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RFC 1216 Gigabit Network Economics and Paradigm Shifts April 1991 3. The ULS Paradigm ShiftThe ULS paradigm shift breaks the downward spiral by concentrating on end-to-end datagrams and virtual circuit services operating in the .01 uGbps region, namely Ultra Low Speed networking.
3.1 Economic Viability
Cost projections indicate that individual ULS circuits can be provided at a cost of <$.03/month due to the unusually high multiplexing that will be possible on Gbit links. The 10 THz bandwidth of existing optical fibers will be able to support on the order of 1 TUser, handling population growth, and even internet growth, for some time. Moreover, if $.03/month is a significant barrier to entry, substantial discounts appear to be economically feasible.
3.2 Clear Applicability
A fundamental principle of networking is that network speed must match the application. We have identified a number of critical applications that are matched to ULS technology. Below we itemize a few of these, but we provide a brief description for only the first; the match for the others should be equally obvious.
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RFC 1216 Gigabit Network Economics and Paradigm Shifts April 1991
- Real time data (e.g., gravity wave detectors) - Italian postal service - Congressional budget process
3.3 Technical Feasibility
The hardware issues are well in hand. The remaining issues are protocol related. To examine them, we must extrapolate backward from some well known networking principles.
3.4 Problems Requiring Work
ULS is not without problems.
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RFC 1216 Gigabit Network Economics and Paradigm Shifts April 1991
- Lower data rates mean fewer errors.
4. Conclusions
The road to Ultra Low Speed (ULS) technology is long, slow, and easy.