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SonTek/YSI Inc
RiverSurveyor System Manual (May 1, 2007)
148
Term Description
DGPS
Differential Global Positioning System. Refer to §
.
distance made good
or DMG
The length of a direct line between the vessel’s start position and the
vessel’s current position. Refer to
.
ENU
The East-North-Up (Earth) coordinate system used by an ADP. See §
for details. RiverSurveyor systems must always use ENU coordinates.
GC-BC
GC (GPS Course) is a direct (straight) line from “start to finish” for the
course traversed at the survey site using the GPS as the track reference.
BC (Bottom-track Course) is the same as GC, except that bottom-track
is used as the track reference instead of GPS. GC-BC is the angle (in de-
grees) between these two lines. Refer to
.
GPS
Global Positioning System. Refer to §
magnetic declina-
tion
The angular difference between true North and magnetic North. This
value differs depending on the location of the survey site. You can de-
termine the magnetic declination for a survey site from several sources:
magnetic declination maps provided by the U.S. Geological Survey,
commercial software, or Internet sites (e.g., The National Geophysical
Data Center (
) offers at least one online program at
The number of data collection points in a profile. The number of cells
collected can vary between 1 and 100. Typical entries for this value are
between 10 and 30. Commonly abbreviated as NC or Ncells.
ping
A single estimate of the water velocity profile. A ping consists of each
transducer sending a short acoustic pulse, receiving the reflected signal
from the scatterers in the water, calculating the along-beam velocity pro-
files, and combining the data from all beams (and the internal com-
pass/tilt sensor if enabled) to compute the velocity profile.
ping rate
The number of pings per second, in Hz. The ping rate is normally de-
termined by the propagation speed of sound.
profile
In addition to its more general use, profile refers to the collection of a
number of pings to produce a mean estimate of the water velocity at
each range (or depth) cell. A single profile includes velocity, standard
deviation, and return signal strength data.
profile time
The ADP records data and time from its internal clock with each profile.
The recorded time represents the start of the averaging interval.
profiling interval
The time, in seconds, between sequential profiles. This is given as the
time from the start of one profile to the start of the next profile, and must
be greater than or equal to the averaging interval (or the averaging inter-
val will take precedence). For most real-time applications, the profiling
interval and averaging interval are equal. This provides a continuous
measurement from start to finish.
profiling range
The range to which a system can profile is determined by user-selected
values for
, and
. The maxi-
mum profiling range of a system is determined primarily by the system’s
frequency (
), but can be restricted by the amount of scatterers
in the water or by interference from physical boundaries (surface, bot-
tom, objects in beam path).
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