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scan_single.m
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scan_single.m
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function [ eddies ] = scan_single( ssh, lat, lon, date, cyc, scan_type, areamap, varargin )
%SCAN_SINGLE Wrapper function to do scanning
% ssh: ssh slice with nans for land, size should be [length(lat) length(lon)]
% lat: 1D array of the latitudes of ssh grid
% lon: 1D array of the longitudes of ssh grid
% cyc: 'anticyc' or 'cyclonic'
% scan_type: 'v1', 'v2', 'hybrid'
% v1: Will run top-down scanning (only works with full data of 0.25 x 0.25 ssh grid)
% v2: Will run bottom-up scanning from the minima of the field
% hybrid: Will run v2 and v1 scanning and will take the union of the
% two sets where, for common features, v2 bodies will be used
% areamap: A 2D array that refer to the area of each pixel in SSH data (should have same size as ssh), or 1D array
% that refer to area of each pixel for a specific lat in a regular grid (pixeld have same area for the same
% latitude)
% Optional parameters (only applicable for v2 eddyscan):
% 'minimumArea': minimum number of pixels for an eddy, used for validating eddies, default value is 9
% 'thresholdStep': the minimum step for thresholding, the unit is SSH's unit, default value is 0.05
% 'isPadding': whether or not to pad SSH data, should be true when scanning SSH data with the longitudes expanding the
% whole world dmap. Set to false if only partial SSH data is used. Default value is true
% 'sshUnits': The units the SSH data is in. bottom_up_single is built to work natively on centimeter SSH data.
% Valid parameters are 'meters' and 'centimeters'. If the paramater passed in is 'meters', the SSH data will
% be multiplied by 100. No changes will be made if the paramater passed in is 'centimeters'.
% The default value of 'sshUnits' is centimeters.
if ~any(isnan(ssh(:)))
error('Invalid ssh data, must contain NaNs for land values');
end
if ~all(size(ssh) == [length(lat) length(lon)])
error('Invalid ssh data size, should be [length(lat) length(lon]');
end
if ~all(size(areamap) == size(ssh))
% Not a 2d array with same size as ssh
if ~any(size(areamap) == [1 1]) || length(areamap) ~= length(lat)
disp('Invalid areamap, using NaN for eddy surface area');
end
end
stype = get_stype();
ctype = get_ctype();
oldpath = addpath('lib');
switch stype
case 1
eddies = top_down_single(ssh, lat, lon, areamap, ctype, varargin{:});
case 2
eddies = bottom_up_single(ssh, lat, lon, areamap, ctype, varargin{:});
case 0
scanners = {@top_down_single, @bottom_up_single};
eddies_out = {[], []};
parfor i = 1:2
eddies_out{i} = scanners{i}(ssh, lat, lon, areamap, ctype, varargin{:});
end
eddies = get_combined_eddy_frames(eddies_out{2}, eddies_out{1}, ssh);
end
[eddies.Date] = deal(date);
path(oldpath);
function scan_t = get_stype()
switch scan_type
case 'v1'
scan_t = 1;
case 'v2'
scan_t = 2;
case 'hybrid'
scan_t = 0;
otherwise
error('scan_type must be v1, v2, or hybrid');
end
end
function cyc_t = get_ctype()
switch cyc
case 'anticyc'
cyc_t = 1;
case 'cyclonic'
cyc_t = -1;
otherwise
error('cyc must be anticyc or cyclonic');
end
end
end