_The illustration above_ gives a rough idea of how a synchronous
satellite system might be set up. Three communications satellites, _S_₁,
_S_₂, and _S_₃, are above the equator in fixed positions equal distances
apart and 22,300 miles up. Located in this manner, they would cover the
major part of the earth’s surface. From a point directly beneath it, the
distance would be 22,300 miles to a satellite; from other points the
slant range would be greater. Signals sent from, say, New York (point N)
to Paris (point P) would be reflected via satellite _S_₁. In doing this,
they would travel a total distance of about 46,000 miles. Because we
can’t send signals any faster than the speed of light (186,000 miles per
second), it would take at least a quarter of a second for a signal to go
this far. For communicating a much greater distance, say from New York
to Calcutta (point C), the signal path would use two satellites, _S_₁
and _S_₂. In this case, the total distance traveled by a signal would be
more than 90,000 miles, and the one-way time delay would be about half a
second.
The Effects of Time Delay
Delays of a quarter- or half-second have different effects on various
kinds of communications. However, we are concerned here only with what
they might do to telephone conversations. Time delay will affect
conversations in two ways. One of these—pure delay—depends on the nature
of speech and the way people use it to converse; the other—echo—has to
do with the nature of the world’s telephone systems.
The first effect can be illustrated by an example. Suppose that George
in Paris is talking to me in New York. He says, “Do you want to go?” and
I answer “Yes” immediately upon hearing the word “go.” But that word
didn’t arrive in New York until a quarter of a second after George said
it, and my reply was delayed another quarter-second, so George hears my
instantaneous reply a half-second late. Under some circumstances, he
might interpret this delay to mean that I was less than enthusiastic
about going. We don’t know exactly what response times people expect in
conversation, or how much variation in such intervals they can tolerate.
But it has been assumed that delays of a half-second or more would make
a noticeable and perhaps disturbing difference. A little later on, I
will describe an experiment dealing with this first effect. But first we
must briefly discuss the second effect of delay on telephone
conversation, to show why we decided to try to isolate the first effect
and study it separately.
The Echo Problem
Public-domain text, read in full here on John Shaqi.
Reviews
Reviews
No reviews yet
Be the first to share your thoughts on this work.
Join the Discussion
Join the discussion
Sign in to leave a comment or review.
Sign InorCreate an account