319 lines
15 KiB
Plaintext
319 lines
15 KiB
Plaintext
=====================
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isce-2.3
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=====================
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First version of the open source release of ISCE under the Apache License-2.0.
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Please read the LICENSE file included in this package.
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ISCE is the InSAR Scientific Computing Environment. It provides a framework
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for constructing components and applications that implement workflows, in
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general, with broad built-in support for processing InSAR data from raw inputs
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through to geocoded interferograms with options for filtering, unwrapping, and
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many more standard products. The InSAR workflows are located in the applications
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directory. Example input files for the applications are given in the directory,
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examples/input_files. Some examples for constructing and using applications are
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given in the examples/applications directory.
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ISCE is developed with Python3 components and workflows that access legacy and
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newer libraries that are developed in Fortran and C/C++. Please read the README
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file for information on the software dependencies that must be installed and
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environment settings that must be set in order to use ISCE.
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=====================
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isce-2.2.1
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=====================
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Planned final release before open source release.
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The next release of isce-2 is planned be an open source release. Details on where to access
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it will be coming soon. Code elements required for the insarApp.py and isceApp.py workflows
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will continue to require a license in order to use them. The open source version of ISCE
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will not include those code elements. Information will be made available for those people
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wanting access to the Stanford licensed components. The open source version includes
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workflows such as stripmapApp.py that are included in this release.
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Additions and Bug Fixes in this release:
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* Fixed bug in mdx wrap interpretation - contributed by Gerald Manipon
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* Fixed bug in isceobj.Image with ENVI Hdr Render - contributed by Gerald Manipon
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* applications/downsampleDEM.py: contributed by David Bekaert
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- enforcing grid range to be a multiple of the sampling
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- adding option to either specify resolution in meters or in arcsecond
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Arc-seconds ensure that one can sample degrees consistently.
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- topsApp.py changes: tight burst validity required only when run with ionopsheric estimation on.
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This remove the issue of gaps between two separate along-track processed topsApp products.
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* topsApp: updated to include ionospheric corrections - contributed by Cunren Liang
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- modified: components/isceobj/Sensor/TOPS/BurstSLC.py
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components/isceobj/Sensor/TOPS/Sentinel1.py
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* contrib/alos2proc: contributed by Cunren Liang
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* GPUTopozero: changed byte offsets to long type
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* applications/gdal2isce_xml.py: removed the hard coded scheme of the data in favor of directly capturing it from gdal
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* topsApp.xml: minor updates (see examples/input_files/master_TOPS_SENTINEL1.xml)
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=====================
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isce-2.2.0
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=====================
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-- General bug fixes
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-- Support for GDAL + c++11 starting from GDAL2.3
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-- Added a --skipcheck option which will disable raw_input if optional dependencies like HDF5
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are not found. This was a feature requested by folks dockerizing ISCE for use on cloud
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machines.
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-- Include option to specify VRT in gdal2isce_xml.py
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-- Added conversion scripts from stack output to stamps input
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-- Fixed renderVRT to not include geotransform or SRS when rendering for non-geocoded images.
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Currently only mechanism to distinguish radar / geocoded images is by looking at coord1
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and coord2 members of Image class
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-- For Sentinel1, increased orbit extraction from 40 to 60 seconds
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-- Changed roiApp.py/roiProc to stripmapApp.py/stripmapProc
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Renamed examples/input_files/roiApp.xml to stripmapApp.xml
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-- Added more checks when reading in new format SLCs
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No guarantees that the reader works for all new variants
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-- For topsApp added option to use a different DEM for geocoding.
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If none is provided, defaults to the DEM used for processing topo.
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------------------------------
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* Updates related to topsApp:
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-- Bug fixes corresponding to valid sample computation in range
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-- Warning messages generated for data acquired during orbit maneuvers
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-- Option of using a different dem for geocoding via the property “geocode demfilename”.
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Suitable for data with large number of looks. User can use downsampleDEM.py to generate
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an appropriately downlooked DEM for use with geocoding.
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* Bug fix to VRT files. EPSG information is now not included for radar geometry files.
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* Updated version of pyCuAmpcor from Caltech with downstream search capability
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* Stripmap readers
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-- Sentinel-1 stripmap reader can read from zip files just like the TOPS reader
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-- Updates to Envisat SLC reader to support new format from ESA
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-- Updates to ICU unwrapper to output multiple connected components (used to be the one
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largest component earlier)
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-- Scons can now either be python2 / python3 based.
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-- ALOS2 ScanSAR reader (use VRTs and save disk space without replicating data). Not used
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by any app currently.
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---------------------------------
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stripmapApp.py:
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* The roiApp.py in the previous release, has been renamed to “stripmapApp.py” for clarity.
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As the self-descriptive “stripmapApp.py” implies, this ISCE application can be used for
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interferometric processing of stripmap SAR data acquired by a wide range of sensors.
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Several bugs have been fixed compared to the previous release and the stripmapApp has been
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tested on different datasets (including ALOS-1 and ALOS-2 stripmap data, CSK, Sentinel-1
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stripmap and Envisat data).
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* The ionospheric phase estimation have been significantly improved by enforcing common
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phase unwrapping error in the sub-band interferograms.
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*** There are additional README files in the contrib/stack directory
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---------------------------------
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Stack processing with ISCE:
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We have added standalone scripts to contrib/stack folder, which allows advanced users to
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process a stack of SAR data using ISCE. These scripts are experimental and have been mainly
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developed for prototyping different algorithms (e.g., precise coregistration and ionospheric
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phase estimation). However, due to large interest of the InSAR community, we have decided
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to release this scripts as is. These scripts won’t be automatically included in your install
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directory after installing ISCE. However, you can easily use them based on the instructions
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found in contrib/stack/INSTALL.txt in your source ISCE directory.
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Note that there are two different stack processors for processing a stack of TOPS or stripmap
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data, found in “contrib/stack/topsStack” and “contrib/stack/stripmapStack” respectively.
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In the “contrib/stack/“ folder there are three text files:
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INSTALL.txt: explains how users should setup their $PATH variable to use the
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stack processor
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README_topsStack.txt: instructions for using the scripts in topsStack directory for
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processing a stack of Sentinel-1 TOPS data
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README_stripmapStack.txt: instructions for using the scripts in stripmapStack directory for
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processing a stack of stripmap data
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---------------------------------
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=====================
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isce-2.1.0 (20170803)
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=====================
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NEW FEATURES. HIGHLIGHTS:
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-- Added ERS_EnviSAT_SLC reader. Contributed by Scott Henderson from the ISCE
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user community. Thank you, Scott!
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-- Change to minimum gcc requirement. Must be >= gcc4.7. Compilation of
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C/C++ code is using the "-std=c++11", which requires >= gcc4.7. See the README
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file for required versions of software dependencies."
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-- New RoiProc and roiApp.py workflow added. New code to estimate ionospheric
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contributions to phase is included in contrib/splitSpectrum and used in roiApp.py.
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-- The "steps" mode of processing has a new command line option: "--next". This
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option determines the next step for a given application based on the most
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recently updated file in the PICKLE folder, whether the files are pickle files
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or xml files; the setting for the property "renderer" determines which type of
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step file is used for determining the next step to be processed using --next
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(the default being pickle files).
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-- The "steps" mode now renders the xxxProc.xml (as in insarProc.xml) file after
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each step so that it is available to view/use after each step. It will be
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overwritten after each step completes.
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-- Added a new simplified water mask downloader, "wbd.py", and dem downloader,
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"demdb.py". The only required command line arguments are the "snwe" lat, lon
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coordinates. They create stitched watermask and dem files with xml and vrt
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meta data files. If you use the $DEMDB environment variable the files will
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be moved to the directory pointed to by $DEMDB and will be automatically
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discoverable by ISCE anywhere on your system.
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-- topsApp.py DEM downloading now downloads to the directory pointed to by your
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$DEMDB environment variable (like insarApp.py and isceApp.py do). If $DEMDB is
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not defined, then the files will be downloaded in the local processing directory.
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The dems and water masks in the $DEMDB directory are available for use in any
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directory automatically. If you want to move your prviously downloaded dems and
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water masks to the $DEMDB directory you will have to edit the paths in their xml
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files.
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-- This release includes some code elements that can run on a GPU requiring as
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dependencies the CUDA API and also an executable named 'cython3' to invoke
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cython. You may need to manually create a soft link with this name pointing
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to the name given to your installed cython. The code that require these new
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dependencies are in components/zerodop/GPUtopozero and GPUgeo2rdr directories.
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This code is not compiled and the CUDA and cython3 dependencies are not
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required unless you include the following line in your SConfigISCE file:
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ENABLE_CUDA=True
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If you do not include this line or if you set the value to False, then
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the code will compile as usual. This is experimental code at this time
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and is not used in the builtin Applications. More code using CUDA for
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GPUs will be coming in the future.
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-- Added 'useGPU' configuration parameter to topsApp.py to use the GPU code
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mentioned above in "New Features". You must also include the "ENABLE_CUDA=True"
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line in your SConfigISCE file in order to compile the CUDA code.
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-- Added "extra ESD cycles" parameter to topsApp.py to add extra ESD cycles
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to interpret overlap phase.
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GENERAL BUG FIXES. HIGHLIGHTS:
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-- replaced dependency on "cv2" with "scipy" in RoiProc/runDispersive.py
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-- fixed open file leaks in image file accessors and added more output to
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show methods being used to open and close files.
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=============================================================================
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Reminder of previous new capabilities and bug fixes:
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1. topsApp related
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a. Can provide zip files / safe folders as inputs
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b. Bug fixes to support multi slice / region of interest processing
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c. Generation of traditional coherence products
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d. Output file names match insarApp – single resolution merged products
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have .full suffix
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e. Looks, filter strength, thresholds etc moved from topsproc level to
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topsapp level
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f. Changes to topsApp to use new Image API decorators
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g. Added support for Sentinel-1B
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2. topsOffsetApp
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a. To be run in same folder as topsApp.
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b. Produces dense pixel offset maps from Sentinel data.
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3. Stripmap processing related
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a. Stripped ALOS raw data of headers
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b. Fixed bug in stripmap frame stitcher when starting ranges were different
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4. General changes
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a. Bug fixes to support near-nadir imaging geometries like SWOT
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b. Geocoding support for datatypes other than FLOAT / CFLOAT
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c. Updates to envisat reader to handle new ESA format
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d. Bug fix in water mask generation when input DEM doesn’t span the image.
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e. Bug fix in DemStitchers to enable dem.py to work again.
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===============================================================================
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Previous note about compiling ISCE after unsuccessful build due to missing headers
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and libraries:
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When building ISCE, scons will check the list of header files and libraries that
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ISCE requires. Scons will cache the results of this dependency checking. So,
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if you try to build ISCE and scons tells you that you are missing headers or
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libraries, then you should remove the cached files before trying to build ISCE
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again after installing the missing headers and libraries. The cached files are
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config.log, .sconfig.dblite, and the files in directory .sconf_temp. You should
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run the following command while in the top directory of the ISCE source (the
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directory containing the SConstruct file):
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> rm -rf config.log .sconfig.dblite .sconf_temp
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and then try "scons install" again.
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===============================================================================
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From past notes about automatic downloading of dems:
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1. You need to have a user name and password from urs.earthdata.nasa.gov and you
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need to include LPDAAC applications to your account.
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a. If you don't already have an earthdata username and password,
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you can set them at https://urs.earthdata.nasa.gov/
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b. If you already have an earthdata account, please ensure that
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you add LPDAAC applications to your account:
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- Login to earthdata here: https://urs.earthdata.nasa.gov/home
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- Click on my applications on the profile
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- Click on “Add More Applications”
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- Search for “LP DAAC”
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- Select “LP DAAC Data Pool” and “LP DAAC OpenDAP” and approve.
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2. create a file named .netrc with the following 3 lines:
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machine urs.earthdata.nasa.gov
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login your_earthdata_login_name
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password your_earthdata_password
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3. set permissions to prevent others from viewing your credentials:
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> chmod go-rwx .netrc
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===============================================================================
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From past note on making stitched dems and water masks globally available:
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Stitched dems and water body masks will be stored in and used from a directory
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indicated by the environment variable, $DEMDB. If you define this environment
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variable with value equal to a path where you want to store stitched dems and
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waterbody masks, then any stitched dem or water mask will be globally available
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automatically without needing to specify any information about the dem in your
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input files for ISCE processing applications. If you use dem.py or watermask.py,
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the stitched products are left in the directory where you run these apps. If
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you want them to be globally available, then either run dem.py or watermask.py
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in the $DEMDB directory or else move them there.
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==============================================================================
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From past note on where to read about installing and running ISCE and on how
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to obtain auxiliary files needed for orbit computations when working with RadarSAT1
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data.
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The README.txt file and the example input files in the examples/input_files
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directory are the most up to date sources of information on installing and running
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ISCE. The ISCE.pdf file is useful but may be dated in parts.
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If you want to use ISCE to process RadarSAT1 data, then you will need to download
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files to the components/isceobj/Orbit/db directory. Instructions on where to get
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the files are given in the file kernels.list file in that directory.
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===================
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End-Of-Release-Note
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===================
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