GPS-Trimble Scout
58 messages in this thread
Hi, Lanny
Work cut me loose a couple of hours early today, (catch is, I have to come
in Sunday) and in a momentary fit of insanity I tracked down REI and bought
a Trimble Scout of my own. I had been leaning towords the Garmin GP45 but
based on comments here and in the Outdoor forum I decided to spend the big
bucks. There have been two cases of the Garmin's locking up and losing their
data. I guess it would be a good idea to carry a small note pad and keep a
manual record of all your waypoints. I havn't been able to lock in more than
2 satellites in the house, but I get 4 out in the yard. It's a bit startling
the first time one compares the indicated location with a known location on
a 7.5" quad and find that they match within a quarter of a inch! 🙂
Guy
Hi Guy
Great, hope you find your Scout as great a piece of equipment as I find mine.
The features it has for use on land and working with maps is definitely a big
step over those that come slightly modified from the marine world. I've been
reading the messages on the GPS Newsgroup on the Internet and am beginning to
think that the only people on it are boaters with Garmins.
I've found that my Scout will generally get 3-4 satellites in under 2 minutes,
whereas people with other units report it taking 5-10 minutes and longer. GPS
is strange in the way it acts. It is kind of interesting watching your reading
jump around while you are standing still.
You just never know how well they will pick up the sattellites. Last week my
son took it to his dental appointment to show our dentist, but in the office it
could only pick up 1 satellite. When we got back home, we checked it in the
yard and in a minute and 10 seconds it had 3 satellites and two minutes later
still didn't have any more. A half hour later in the hose I turned it on and it
had 4 satellites in under 2 minutes.
I am hearing rumors that the DOD will stop dithering the signal in 1-2 years.
(not sure if this is just wishful thinging or if the word is leaking out).
Bought it from REI, hope you are a member.
Lanny
Hi, Lanny
> A half hour later in the hose I turned it on and it had 4 satellites in
> under 2 minutes.
Sounds familiar – and when you are showing it off to a friend, and he has 3
SV's acquired, you tell him that when it locks in a fourth it will display
the altitude. At that point it instantly acquires the fourth satellite and
then the fifth, and _still_ steadfastly refuses to reveal its altitude
guesstimate. 🙂 Not to worry – I didn't buy it for an altimiter.
The big suprise I got was the Thomas Guide interface. I wasn't aware that it
could tell me which Thomas Guide, which detail page, the grid square, and
the quadrant within the square I am standing in! Now if we could just get
the Thomas folks to produce detail maps of all the mineral areas! 😉
Guy
P.S. There ought to be some kind of game that could be played on-line with
these devices. Something on the order of:
You send me coordinates of a local (to you) landmark, I send back an offset
from my local landmark, and you try to compute the location of my landmark.
Points could be given based on:
1, Takes a tactical nuclear device.
2, close enough for hand grenades or horseshoes.
3, Spot on. 🙂
P.P.S. I joined REI when I bought the Tricorder. I hope the DOD cleans up
the signal too.
It is a fun and finicky system Guy,
I've only gone out in the field once with mine and am already convinced that I
should have been issued one at birth (along with a banjo of course). (just
about to head out the 2nd time)
Interesting game, but we would all need the Thomas Guide or something similar.
The Thomas interface is kind of nice, almost wish I used it, of course, like
you said they don't make detailed maps of our favorite spots in the mountains!
Lanny
Lanny —
Where did you hear that the DOD may turn S/A off? I was thinking that the GPS
manufacturers could get together and force the DOD to turn off S/A under the
freedom of information act unless they could prove a big military advantage of
15 meter as opposed to 100 m accuracy.
Just out of curiosity, how many sats does your Scout usually lock on to in your
neck of the woods? You are in WA – right? Here in central CA I get six 99% of
the time in flat terrain. I have noticed that your body can block or weaken the
GPS signal. If you hold the unit close to your body and turn around, you will
see gain or loss of signal strength on one or more sats. If you put your hand
over the antenna, you usually lose them all. One implication of this is when
using the unit on the side of a hill, you should probably stand with your back
to the hill.
— Bill
Bill
Just rumors on the Internet Newsgroup — sci.geo.satellite-nav — I don't know
if it is just people dreaming or if the word is actually leaking out.
Considering anyone who has $30,000-50,000 can by a unit that will decode the
dithering, and our "enemies" undoubtedly do this, why is it dithered anyway?
Must be the government just doesn't want us civilians to use what we paid for.
Also, a friend in a recent letter commented on it too, another one of those he
heard from-who heard from, etc. So, maybe it will happen in a couple years and
we can have a clean signal.
I'm in N. Idaho. In this area, my Scout picks up 4 almost all the time,
sometimes 5 or occassionally 6. In N. Central Montana it often picked up 5 or
6. It does it rather quick. Others tell mey it often takes 5-15 minutes to get
3-4 satellites, where as this thing generally gest 3-4 in less than 2 minutes
and usually the next 1 or 2 in another 2 minutes. I was surprised being in a
moderately narrow deep canyon in the mountains north of Yellowstone Park (the
only place I took a reading in that area) and it picked up 4 satellites. I
really didn't think it could see that much sky. Makes me wonder just how 24
satellites are placed.
Lanny
Lanny —
From the bits and pieces I have seen, those expensive units don't decode the
dithering in real time. I think the DOD publishes more exact satellite
positions and the algorithms to decode the dithering about 2 weeks after the
fact.
I think there are more than 24 satellites. I have kept a record of which sats
the Scout has locked onto (yeah, I know – I need to get a life). I have seen #1
to #31 except 3, 8, 10, 11, 13 & 30. That's 25 – I wonder if there are a couple
hanging around the equator that can't be seen up here.
I was talking to a guy who sells the Scout in So. CA and he said a lot of folks
in the movie business are buying them because of its sun angle/rise/set
ability.
— Bill
There are 0nly 24 block 2 satellites in orbit. There are still a couple of old
satellites left over from the block 1 ( concept testing) launches which still
work. There are no satellites which sit around the equator: they are all in
orbits inclined at 55 degrees to the equatorial plane.
To reduce the effects of Selective Availability ( dithering) all you need is
one or more stationary receivers located on a known point. Corrections to the
satellite pseudoranges are produced at this static receiver on a continuous
basis and transmitted to the mobiles ( at anything up to 1000 km away). This
mode is called Differential mode ( DGPS). The cost comes at the correction
transmission end. For short ranges MF, VHF or UHF frequencies can be used. To
cover larger areas, the Inmarsat ( Maritime communications) satellites
broadcast corrections from several sets of differential reference stations
located around the world. All you need is a portable Inmarsat ground station!!
I've been using GPS "in anger" for 10 years now. In 1986 I helped to
re-triangulate northern Brazil ( finding in the process a 56 metre error in the
original trig). At that time, using the block 1 satellites, we were obtaining
baseline accuracies of 5 centimetres plus 2-3 parts per million of the baseline
distance up tp 200 km, at the 95 % confidence level. Survey units do even
better these days.
Rob
Rob —
Thanx for the info on the number of satellites and there orbits. I don't think
DGPS would do me much good up in the mountains and since the places I am
looking for are at least several acres in size, I really don't need super
accuracy.
Now, if someone could explain datums and why we need so many, I would be in pig
heaven. I mean – it seems like a point on the earth is where it is and it
shouldn't be all that difficult to plot it on a map.
Thanx again
— Bill
Hi Bill,
More than 24 satellites? Interesting. I read several articles from various
magazines, a booklet from Trimble, had lots of discussions with various users,
etc. and always came up with 24 as the "real" number. I wonder what gives. Out
of curiousity, if there are 24 (or more) satellites and they are positioned so
that the system works over the entire globe, how can they all be visible at
various times from anyone place? If they are not in asynchronous orbit then
what are they in?
Doesn't it seem like a person who spends several thousand dollars on a decoding
system to do surveying or navigation would want the information immediately,
not a coule weeks later?
Trimble advertises the Scout as being great for the photographer, movie maker,
etc. Some people know where to find specialty markets!
Anyway, having just (today) having returned from 5 days in the field with mine,
I like it even more, but would like it a whole lot better if the location was
known to be correct within 30 feet instead of 300 (or more). Such as, I was
standning on the road at a garnet locality on the Salmon River (centeral Idaho)
writing down a reading when suddenly both the lat and lon started clicking down
and were soon both about .2 sec less than the "stable" reading I was recording.
That is a change of better than 400 and 600 feet in a few seconds!
Lanny
Lanny —
Rob explained the extra satellite question and why we can see them all. Since
the orbits are inclined 55 degrees from the equator and they go around twice a
day and the earth turns under them, they should all be in range at one time or
another.
I don't remember where I saw the two week delay thing and I don't even know if
it is true. If you are navigating, you would want the info in real time but a
surveyor could wait for more accurate data.
I find it a little disconcerting when standing still and the Scout is in the
navigation mode, it decides to start "moving" at about 5 or 6 mph until it gets
to some new location. This has happened several times. The only explanation I
can think of is it is switching to another satellite.
I'm heading for the hills on Thur. for a 5 day "retirement nugget" hunting
trip.
— Bill
Hi, Bill
> I find it a little disconcerting when standing still and the Scout is in
> the navigation mode, it decides to start "moving" at about 5 or 6 mph
> until it gets to some new location.
How far does it 'go'? Mine rarely exceeds 2.5 mph, and usually settles down
after 100 feet or so. OTOH my Loran is constantly on the 'move'. 🙂
GPS trivia time: Radio station WWV in Fort Collins, CO transmits status
information on the GPS 'constellation' every hour at 14 minutes after the
hour. You can call (703) 313-5900 to request information about the system,
or ask to be transferred to the recording (same info that WWV carries). I
haven't tried it yet, but they supposedly have a BBS at (703) 313-5910, 300
to 14.4k bps, 8 None & 1.
Cheers, Guy
Guy —
I don't remember for sure but I think I've seen it move 4 or 500 ft. I'll check
out the BBS
Thanx — Bill
Bill
When your Scout moves like that just tie its legs together.
Yeah, that is real pain. When that type of thing happens I just guessed it was
the dithered signal being changed so that the error is changing. For that
reason you can get a fix then watch it change, sometimes it will be stable for
several minutes then start changing. For me last Sunday evening on the Salmon
river, I got a reading, wrote it down, then just as I was going to turn it off
both the lat and lon started decreasing and ended up with both nearly .2
seconds lower in a couple minutes (its a narrow canyon with only 3 satellites
being read). That was a gross change equal to about 1200 and 800 feet
difference from the first reading!
The 55 degree positions and passing over anyone point twice a day would explain
a few things. Although, is it really physically possible for 12 satellites to
be in view and readable by some units as they claim in their ads, even 8 seems
like a physical impossibiltiy unless you were high in the Rockies (or Mt.
Everest).
Lanny
>When your Scout moves like that just tie its legs together.
Lanny —
Maybe that is why Trimble supplies a lanyard for the Scout.
I think you are right about the impossibility to "see" 12 satellites at once. I
have never seen more than 6.
— Bill
You can see up to 12 satellites at once with a 12 channel receiver, which the
Scout ain't!! Depends on the mask angle you set… if it's at 10 or 15 degrees
there won't often be 12 satellitees above the view horizon at once, but if you
set it to 0 or 5 degrees you should be able to see 12 quite regularly.. but not
with a Scout!
Rob
Rob
I can't picture the geometry of this. If there are 24 satellites spread around
so they cover all the globe at once, how can one point on earth see 12? By
drawing little pictures, all I can come up with is the physical possibility of
seeing 6 at a time, or perhaps 8. Unless my understanding of the physics of the
thing is all haywire, 12 shouldn't be in view.
Lanny
see my post to Bill… I've seen 12 satellites often, but the low ones were not
so good!
The shift you saw may not have been due to SA… it could also be due to
multipath ( reflections), especially with canyon walls around you. With 3
satellites, working in a canyon is quite problematic. I presume that you're
using a fixed height to get your solution, since if you're not, you'll need 4
satellites anyway. I suspect that the PDOP of the 3 satellites you were
actually tracking would be very high, if they were all in one small secgment of
sky defined by the canyon. One signal subject to reflection would contaminate
your result quite badly.
Rob
Hi, Rob, Lanny, and others–
In another message, Rob mentions a "mask angle" setting on a GPS unit. It
seems using this setting carefully might avoid the problem of signals being
reflected off mountains and whatnot. If the mask angle is set higher than any
nearby mountains, many reflections should be rejected.
I am assuming the mask angle is a setting that causes signals from GPS
satellites too close to the horizon to be ignored. If the GPS unit can
actually detect the direction of the signal (phased array detector with a
sensor for the orientation of the unit??), this should work quite well. But I
am guessing the unit really "listens" to the satellite for info on where it is,
and then decides whether or not to ignore it. This would leave it unable to
distinguish reflected and direct signals from the same satellite, but
reflections from satellites not in view would be rejected, and satellites close
to overhead are likely to send reflections to the observer only via shallow
reflection angles, which I am guessing are less efficient and thus less
troublesome.
If this is impractical, I wonder if GPS units allow one to determine which
satellites it will pay attention to. "This satellite's signal looks fuzzed up,
so I will just push the reject button…"
I am largely ignorant of GPS; am I barking up the wrong tree, folks?
–Doug
Hi, Doug (I've been wondering were you've been)
> But I am guessing the unit really "listens" to the satellite for info on
> where it is,
Right on. The Scout maintains an 'almanac' so it knows where and what
satellites are overhead (well, above the horizen). It has a display that
gives the direction and altitude (in degrees) of up to eight satellites. It
will track the 6 best signals, switching sats. as required.
BTW, The first time a Scout is turned on it takes 12-15 minutes to download
the almanac. Apparently it only needs to 'see' 1 satellite to do this. I
fiddled around with mine for several hours before it managed to lock three
satellites, (picked a bad time of day I guess, haven't had that much trouble
since) yet it reported a full almanac after about 15 minutes.
Regards, Guy
No, you're very close: the mask angle just cuts out those satellites which the
rx *knows* ( from the orbit ephemerides transmitted) will be below the selected
angle at the approximate location of operation.
There *is* a health flag whereby the satellites flag themselves as sick ( or
are told to so flag themselves by ground control) if certain self-tests are not
passed. If the signal path is corrupted or interfered with, there's no easy way
of detecting this except using the old surveyor's technique of over-determining
the system: ie, logging as many satellites as possible in the hope that one or
two bad pseudoranges will not corrupt the result too much.
Rob
Rob
Thanks, that makes sense. I didn't bother to check the data on the satellites,
but considering how little of the sky one can see in the canyon, the satellites
must have been fairly close to gether.
Lanny
Rob,
You've lost me a little, I'm not sure what you mean by using a "fixed height".
Generally I just turn the machine on and it tells me how many satellites it is
reading and gives a lat/lon and elevation. Now I have to go back and read the
instructions again and see what more I can get out of it. My use is to locate
geologic/mineral sites which are typically many miles apart, even half way
across a state in several hours (as I check spots out on the way to or from the
main area). Are there any "secrets" we should be doing to get the most out of
these things with this type of use?
I heading out tomorrow to do the same thing for 5 days in SW Idaho. The first
site is a 2.5 hour drive from home, then the next sites are within 30 miles of
each other but a couple hundred miles south of the first one.
Lanny
* Secrets*: Can't give you a proper reply in time for this trip, but on the
"fixed height" thing:
Generally, 4 satellites are required to give a 3D fix, because you have 4
unknowns: Lat, Long, Height and User Clock Offset from GPS system time…ie ,
how far away from GPS time your receiver clock is: they can't be fully
synchronised since receivers use "cheap" crystal clocks which are worse
timekeepers than the caesium and rubidium satellite clocks by several orders of
magnitude. You can see, without me going into the maths, I hope, that if you
had some knowledge of your height, you could constrain it to a known value and
would then only have Lat, Long and UCO as unknowns, allowing a fix with 3
satellites.
On one of your other questions, I reiterate that the satellites are not in
geostationary orbits, but they're still high ( I'll give you the exact figure
tomorrow when I log in from work, since I don't have a textbook handy and I
don't want to give you US info). I stated earlier that the Block 2 satellites
are in orbits inclined at 55 degrees. I also noted that there are a few
functional Block 1 ( test satellites) still around. These are in orbits of 63
degrees. I'll try and figure out a way of representing orbital plots here, but
failing that I may try to capture a screen from the Trimble survey planning
software suite and upload it as a GIF.
Rob
Second message: remember, the satellites are orbiting very high, so it's not
physically impossible to have 12 above the horizon at all, even at a relatively
low height. Trimble sells some PC software for producing maps of satellites in
view/ geometries etc… quite a useful planning tool if you're doing a lot of
canyon work.
Rob
Thanks Rob
I guess I never really thought about the fact that in gesynchonous orbit a
satellite that "should" be hidden by the curve of the earth could still be in
sight. Then again, from most points on earth you can't see "around the curve"
but only less than 180 degrees, it still seems like only 8 or maybe 10 should
be in view. Oh well, my Scout tracks up to 8, using 6 and that should be enough
if the DOD would quit screwing up the signal. I don't want to survey in a line
to the nearest .001 inch, so 10 m would be just fine, 30 m would be OK, but
watching an occasional reading jump around 200-600 feet with 5-6 satellites
being read does get a bit frustrating.
Lanny
I didn't see the original qustion re the " 2 week delay thing" but I presume
that what is being discussed here is the availability of Precise Ephemeris data
for enhanced processing. The delay there is about 2 weeks. What you get in real
time is a position derived from satellite orbit parameters which the satellites
themselves are broadcasting as part of the navigation message. This data is
based on the last orbital parameter correction from the ground control
segment, and is therefore based on extrapolated predictions from orbital
measurements made up to the upload time.
The tracking stations are continuously measuring the *actual * orbits of the
satellites as they pass over. This data is logged and refined to produce a set
of parameters which describe where the satellites *were* at various times, as
opposed to where they * thought* they were at those times. You're quite right
in saying that us surveyors can often wait a couple of weeks for refined
ephemeris parameters. However, in real time using differential techniques plus
16,000 dollar multi-channel geodetic GPS receivers we routinely achieve better
than the 30 feet ( at the 2 sigma level) which you guys seem to crave. There's
nothing to stop you setting up a differential base station on a geodetic point
to cover a local area where you might be doing a lot of work. All you need is
another Scout and a telemetry system!
I'll revert on the errors soon…BTW, I hope you guys appreciate this: I
normally charge 600 dollars per day for teaching basic surveying and GPS
techniques to geologists and geophysicists in the seismic industry <bg>.
Rob
Hi, Rob
> I hope you guys appreciate this: I normally charge 600 dollars per day…
We love it – keep it up. That's why we send the buck$ on CI$ – exceptional
return on the investment over the long run. 😉
Thanks, Guy
Rob–we appreciate it. And are willing to return the favor, ask a geology
question anytime!
Lanny
I will… give me a little while to think of one <g>.
Rob
The position movement seen when standing still may be the result of either SA
or of picking up a reflected signal from a particular satellite. If the Scout
is in "navigation" mode, it probably "expects" you to be moving, so the jumps
that you get within the normal spot accuracy of the system may serve to set it
off tracking a false course. I'm not familiar with the Scout in any detail, but
most Trimble receivers incorporate a Kalman filter (predictive) model into the
positioning computation.
You also have to bear in mind that the system has a particular quoted
"accuracy". To get a "proper" fix on a static location you should really occupy
it for a period of time, taking positions at frequent intervals. These
positions will jump around a little. If you plot them out you'll get ( in 2
dimensions) a scatter plot which will usually have an elliptical shape, with
size and orientation dependent on current satellite geometry. This set of
positions will usually have a normal ( gaussian ) distribution. It is possible
to compute the magnitude of the standard error at any orientation around the
point from the size of the semi major and semi minor axes and their
orientation. Unlike the standard error of a one dimensional set of
observations, which identifies the limits within which around 68 percent of
observations will fall, the SE value of a 2 dimensional data set indicates the
limits within which 39 percent of observations will fall: ie, 61 percent of
your fixes will fall *outside* the one standard error ellipse. ie, over 6/10s
of your fixes taken will fall outside this ellipse, *but they are still
perfectly valid fixes, since the observations falling in the *tails* of a
gaussian distribution are just as valid as those falling towards the mean
value. To get the size of ellipse within which 95 percent of your fixes will
fall ( a fairly standard figure used as a confidence level in many
applications), you need to scale up the axes of your original ellipse by a
little under 2.5. This is a very empirical ( rather than theoretically
rigorous) illustration, but basically, once you have established the size of
your error ellipse, the fix can jump about within those ellipse boundaries as
much as * it likes*… even from one end of the major axis to the other on
subsequent fixes, and the receiver has still given you a *statistically valid*
position. Even the odd *valid* fix ( about 5 percent of the total!) which falls
outside the 95 percent ellipse boundaries must be allowed for.
What this gives us, though, is not an *accuracy* for the fix… it is the
*precision* of the fix…. ie, a measure of the spread of random errors within
the observed system. This *precision* only accounts for random errors.
Non-random errors such as biases in observation will not contribute. ie, we
could have a very tight gaussian curve for a set of positions who's mean is
nevertheless a long way from the "true" position due to an uncorrected bias (
such as observing a reflected range from one satellite). On the other hand,
poor satellite geometry could give us a very low, wide gaussian curve who's
mean is very close to the "true" position of a spot. Consequently, we have to
add a factor called *reliability* to the factor called *precision* in order to
obtain an estimate of the thing called *accuracy*. I don't plan to go into the
statistics here, but reliability is basically a statistical determination of
the likelyhood of being able to detect a gross (non-random) error of a certain
size within a set of observed values. Many (most?) adverts and other literature
actually quote the precision achievable with a particular instrument, rather
than it's accuracy. In any event, precisions should always be quoted with a
confidence figure attached ( ie, 95 percent, 2 sigma, 39 percent etc).
Sorry about the lecture <g>. Most of the above may not be new to you, but I
would say that 30 percent of my time is now spent explaining the above to
people within the oil industry when they've been "sold a lemon" on positioning
of a survey. You guys live or die by your own efforts, it seems, but in oil
companies the advent of GPS has led to explorationists deciding that they no
longer need surveyors, since they now have black boxes to replace them. I'm not
complaining too much, though, since I'm now making more money rectifying
geophysicist's screw-ups than I ever made in gathering and processing the
initial data for them<bg>. Next installment will be on datums.
Rob
Here begineth the lesson on datums:
In the beginning was the *topography*, which was up and down all over the
place, and not describable mathematically. And the topography was without form
and mightily vexatious for surveyors, because it interfered with their
measurements.
And lo! the surveyors invented the *geoid*. The geoid took the form of the
earth from which all the topography had been removed. And the *geoid* was an
imaginary equipotential surface corresponding to the location of mean sea level
if the earth was covered with a frictionless, limitless, tideless sea. And the
surveyors called the geoid *geoid* because this word means *earth-shaped*. And
the surveyors enlisted the assistance of the tribe of the rockhounds, to
realise the dream of the geoid by chipping little bits of the topography away
until, in the fullness of time, the geoid will become a real surface.
And the shape of the geoid is like unto a pear, if one stretches the
imagination a bit. But the surveyors found that lo! although this surface
contained fewer lumps than the topography, it was still a bitch to calculate
on. And it came to pass that eventually the great prophets at the DMA
constructed a gravitational model of the geoid with 18,000 coefficients which
was a representation of the geoid of that type known as *pretty fair*. This
model was constructed to feed the appetite of the arcane beast known as SDI,
but the great prophet in the White House forbade the release to the surveyors
of more than the first few coefficients in this series, fearful as he was that
any other prophet may be able to pinpoint the true location of the White House
to a few metres and thus destroy his abode with accurately targeted fire and
brimstone.
Lacking enough of the wisdom of IBM, Amdahl and Cray, the surveyors were
mightily vexed to find that a model containing even the first few coefficients
despatched unto the people by the miserly and secretive prophets of the DMA was
still a bitch to calculate, and so returned to a surface used for computational
purposes by many previous generations of surveyors.
And the name of this surface was *ellipsoid* also known unto certain brethren
as *spheroid*, and many of the sons and daughters of the surveyors used the two
terms interchangeably without perceptible problems. And the ellipsoid was
without form and void, until some smart cookie created it by rotating the form
of an ellipse about it's minor axis. Oh joy! This surface was found to be easy
to calculate with in the grade of *dead cinch*.
And the ellipsoid was completely defined by an axis of the type called
*semi-major*, and a value called *eccentricity*. And the distance between two
points on the ellipsoid was found to be calculatable using only the most basic
spherical trigonometry of doubly curved surfaces. And the surveyors surveyed
it, and were glad, for the mysteries of div, grad and curl, not to mention the
calculus of tensors, were well beyond the capacity of most of them, for
otherwise they would have been of the tribe of astrophysicists.
And the joy of the surveyors, at first as sweet as the good wines of Lebanon,
turned to dust in their mouths when they realised that the shape of this
ellipsoid bore only passing resemblance to the shape of the geoid, and it's
facility of calculation was therefore of the type known as *effectively
useless*.
And so the tribe of the surveyors fragmented across the globe. Prophets arose
in each location. And each prophet measured the shape of the earth in his own
location and derived an ellipsoid which closely modelled the shape of the geoid
around the location of that prophet. And the sizes of these ellipsoids, and
their eccentricities, were all different. And none of the ellipsoids had the
same location in space, for all were designed to fit the geoid at a particular
location and nowhere else.
….. To be continued!!!
Rob
Rob,
Good stuff, what about the WGS-84 (world) datum, or is this just the Tower
of Babel that you just described? Maybe we should just stick with the datum
descibed by our local maps? How would one set up a custom datum? The Scout
manual dedicates Appendix B to the subject, but I'll be the first to admit
that this is _WAY_ over my head!
Thanks, Guy
Don't worry about it… part 2 should clarify things, with a short precis at
the end in "plain English" to isolate the main "datum facts". I'll probably
write it tonight.
Rob
Bill
I just remembered something else that may indicate GPS will have SA turned off.
There was a newspaper article a couple days ago that stated that Loran was
supposed to be phased out by 2015, but under current funding will probably be
phased out by 1998. Only a few 100,000 boaters depend on Loran, so the loss of
their navigation won't go unnoticed! The article did mention that GPS is the
only reasonable alternative. Thus, there should be a little more incentive to
make it actually work.
On the boating section of the Outdoor forum, a few people commented that GPS
was nice, but when heading for the entrance to the harbor in the fog where they
only have about 30 feet of clearance they still use Loran for its 10' accuracy
and use GPS mostly as a toy.
Lanny
Hi, Lanny
> On the boating section of the Outdoor forum, a few people commented that
> GPS was nice, but when heading for the entrance to the harbor in the fog
> where they only have about 30 feet of clearance they still use Loran for
> its 10' accuracy and use GPS mostly as a toy.
10' accuracy?! No way on a loran… I _HAVE_ a loran unit, and in my
experience it's been off by more than a quarter mile. The sailer friend that
_GAVE_ it to me (after he bought his GPS) would back me up on that. Are you
sure that they weren't talking about their radar units? Darn, another forum
section I need to check out. 🙂
Cheers, Guy
Guy —
I was under the impression that Loran isn't very good for getting from point A
to B but if you store a location, it is very good at getting you back there –
is that true?
— Bill
Hi, Bill
Bear in mind that I was using the Loran on land, with the usual obstructions
from trees, power lines, etc. But what I was doing at the time was getting
back to a stored location – my house. When I arrived, the Loran claimed I
lived about 1/4 to 1/2 mile South! 🙂 OTH, an experiment with my Trimble
Scout GPS this morning driving to work put me within 50 feet of my expected
location. (Actually I _WAS_ about 50 feet from where I had recorded the
location!) As the GPS accuracy is only supposed to be +- 100 meters, my best
guess is that I had lucked out and the DOD had temporarily turned off SA
for the occasion. 🙂
Cheers, Guy
>As the GPS accuracy is only supposed to be +- 100 meters, my best
>guess is that I had lucked out and the DOD had temporarily turned off SA
>for the occasion. 🙂
Guy —
I think they turned it off for me too a few weeks ago. I had stored a gold mine
location using "over & up" and when I finally found it, the Scout said I had
74' to go.
— Bill
SA is only applied to 1 or 2 satellites at a time: they just don't tell you
which ones, and they jump it about. It's quite probable that you positioned
yourself using uncorrupted data.
NB: I've only just started looking at this thread (pity, really), but I see you
all talking about accuracies, the need for good maps etc. Are you guys aware
when using your maps that the GPS units, as a default, generally output
positions in WGS 84 datum, and that your maps, in the US, are likely to be in
NAD 27 datum, still, in most places? Thus plotting your position on a NAD map
without selecting NAD output on your rx will put you out of position by around
150 metres.
Rob
Hi Rob,
> Are you guys aware when using your maps that the GPS units, as a default,
> generally output positions in WGS 84 datum, and that your maps, in the
> US, are likely to be in NAD 27 datum, still, in most places?
Yes, I was aware of that. (Well, at least I read the fine print in the
lower-left corner of a USGS quadrangle map. :-)) Here is what the Scout
manual has to say about the subject:
"Many U.S. topo maps are based on the default datum for
SCOUT–N-Am. 1927CONUSmv (also known as 1927
North American datum or NAD 27."
Chalk up one more advantage of using a unit designed for land-lubbers. 🙂
Thanks, Guy
But check your map Guy. Quite a few are based on a 1957 datum.
Lanny
> Quite a few are based on a 1957 datum.
Will do.
Guy
Hi Rob,
The Trimble Scout's feature for plotting on maps "Over and Up" provides for
setting the datum to one of quite a large list, including the most popular in
many foreign countries. Most of those used in making USGS topo maps, FS maps,
BLM maps are in the list. So, all one needs to do is just remember to check and
select the right one before using it!
Lanny
>SA is only applied to 1 or 2 satellites at a time: they just don't tell you
which ones, and they jump >it about. It's quite probable that you positioned
yourself using uncorrupted data.
Rob —
I am curious about something. My Trimble Scout has a "user range accuracy"
display. I think this is obtained from the data message received from the
satellites. All but 4 or 5 have a URA of 32 meters but the rest have a URA of
either 2 or 4 m. I have assumed that the 2 or 4 m URA's are from satellites
with S/A off. Is that correct?
— Bill
Just downloaded my mail.. no time for detailed responses today, but I'll get
back to you tomorrow, wnen I've had some sleep ( gruelling 48 hours!)
Rob
Rob —
No hurry, I will be out of town till Monday.
— Bill
Guy
One can get lucky. The geologist I was with during this last trip (just
returned today) has a Garmin 50 that he has had for 3 years mounted on his
dashboard. He was taking me to a new agate locality in Central Idaho and as we
drove up to the spot he read off the coordinates and that stupid Garmin
("stupid" being a smartass comment meaning it was showing us up) came up
reading exactly the same coordinates (to me hundredth second, it doesn't go to
the thousandth). I stepped out of his Cherokee with my Scout and got readings
that were different by about .03 and .05. I asked him to turn his back on and
check and the reading came up similar to mine, but different by a few
hundredths. Guess we were lucky when we drove up, but very impressive!
As I understand the accuracy, it is supposed to be accurate to 10 m except when
SA is screwing it up so that it is only within 100 m. Thus we never really
know.
I see that Campmoor has the Magellan Trailblzer down to $400 now.
Lanny
> I see that Campmoor has the Magellan Trailblzer down to $400 now.
Yea, the lower price on the 'blazer was announced on the great outdoor forum
the evening I got back from REI with the Scout. I made some kind of
sarcastic remark on-line about it, and some kind soul replied that while the
Scout cost twice as much, it has at least three times the capability of the
'blazer. (Waitaminute – this was in the 4×4 section! Were we really talking
about GPS's?! :-)) Anyway, I've come to agree with the guy after working
with the Scout a bit.
BTW, I bought the Scout accessory kit – remote antenna and battery
eliminator from Trimble. It was $225, but worth every penny if you plan to
use it in your vehicle. Had 5 satellites locked blasting down the concrete
canyon of the Stadium Freeway. Yesterday I found a cell-phone mounting kit
that will work with the Scout at Radio Shack. It consists of a base that
can be mounted on the floor or dash of your vehicle with a flexible
gooseneck holding a foam-lined clamp. Now I need to find a foolproof alarm
system so I can keep all this good stuff. 🙂
Regards, Guy
Guy —
I have been looking for a way to mount the Scout in the car. How well does the
RS mount work?
— Bill
Hi, Bill
> How well does the RS mount work?
I'm in the process of upgrading the '79 Bronco to an '81 Bronco that I
purchased over the weekend, and haven't had a chance to install the mount
yet. Repairs to the windshield wipers and drivers side window mechanisim
have been occupying my time. (Hey, it's early summer in Oregon – ya gots to
be able to wipe rain _and_ open the window to be comfortable at all times.
:-))
The clamp, at it's widest setting, holds the Scout quite tightly as it was
designed to hold a much narrower cell phone. If it wasn't for thick foam
pads on either side, and a little bit of flex, the Scout wouldn't have fit.
The flexible post that holds the clamp is quite stiff, so I don't anticipate
any problems with it's ablility to support the weight of the scout.
Cheers, Guy
Guy
Thanks for the price quote. After my use of the Scout last week, I decided that
I really needed the antenna and cigarette lighter power connection. Almost
called today, now I can wait and plan where else I can not spend $225 so I can
buy this "must have" accessory!
Actually what you need is a small transmitter in your Scout so that when it is
stolen it will send you a steady message as to its location!
My friends Garmin mounted on this dash board (Cherokee) with quite a slope to
the windshield, using the attached quad antenna was usually picking up 4
sometimes 5 satellites. My Scout lying on the dashboard of my Ranger with a
moderately sloping windshield will generally get 3 or 4 satellites, but
sometimes only 2.
Have fun, Lanny
Lanny —
The only problem with the antenna/power cord kit is it seems like a lot more
wires than is really necessary – I think it is kind of a kluge. At least one
wire becomes unplugged during any trip. That's why I'm interested in Guy's
Radio Shack find.
— Bill
Didn't see your reply before I made pretty much the same point. I've been using
Pulse/8 ( the Loran survey derivative, which is more accurate than Loran
itself) since 1978, and I've never had better than 20-30 m at the 2 sigma level
from it. I've used GPS since 1984 and DGPS since 1986, and I *know* what I'd
have for choice!! As part of a Kalman filtered Integrated Nav system, DGPS can
be relied on to position a moving vessel to better than 10 metres virtually all
the time.
NB: We should perhaps define the difference between "accuracy" , "precision"
and "reliability" if we're going to get a lot of figures bandied about on this
thread.
Rob
> We should perhaps define the difference between "accuracy" , "precision"
> and "reliability" if we're going to get a lot of figures bandied about on
> this thread.
Good point. Thanks for jumping in on the thread. I'd love to hear more about
your experiences with both Loran and GPS equipment.
Regards, Guy
Guy–I wouldn't swear by my memory, but the conversations were covering the
usability of GPS compared with Loran. I just spent a few days with a geologist
who had been to sea for a few years and he stated the same thing, Loran was
only better than nothing, but that was before the improved Loran C.
Lanny
Loran… 10 feet accuracy: no way: the crossover points of the pulse
transmissions cannot be determined to better than 20ns, never mind the tracking
point location in the pulse. Then there's propagation path effects etc. I've
used Pulse/8 ( the survey derivative of Loran, which is *more* accurate) for
many years, and there's no way that even Pulse/8 delivers better than 20-30
metres at the 2 sigma level, on the best day it had, near the baselines, and at
reasonably short range. Give me a choice in fog and I'll take differential GPS
any day…. and that's from someone who's been responsible for keeping seismic
vessels of 2000+ tons on track to within 10 metres.
Rob
Rob
Great. Maybe a lot of the boaters on the power boating and sailing forums just
don't want to give up the Lorans they were born with!
The trouble with DGPS is that most of us on this forum can't afford the extra
unit over and above a $500-800 portable. Also, it isn't exactly convenient for
running around in the woods at several areas (in my case this last week where
the two main areas were 150 miles apart). At least as I understand the
equipment required.
Lanny