177 lines
6.8 KiB
Python
Executable File
177 lines
6.8 KiB
Python
Executable File
#~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
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# Copyright 2013 California Institute of Technology. ALL RIGHTS RESERVED.
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#
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# Licensed under the Apache License, Version 2.0 (the "License");
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# you may not use this file except in compliance with the License.
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# You may obtain a copy of the License at
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#
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# http://www.apache.org/licenses/LICENSE-2.0
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#
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# Unless required by applicable law or agreed to in writing, software
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# distributed under the License is distributed on an "AS IS" BASIS,
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# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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# See the License for the specific language governing permissions and
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# limitations under the License.
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#
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# United States Government Sponsorship acknowledged. This software is subject to
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# U.S. export control laws and regulations and has been classified as 'EAR99 NLR'
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# (No [Export] License Required except when exporting to an embargoed country,
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# end user, or in support of a prohibited end use). By downloading this software,
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# the user agrees to comply with all applicable U.S. export laws and regulations.
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# The user has the responsibility to obtain export licenses, or other export
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# authority as may be required before exporting this software to any 'EAR99'
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# embargoed foreign country or citizen of those countries.
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#
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# Authors: Kosal Khun, Marco Lavalle
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#~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
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# Comment: Adapted from InsarProc/runOffsetprf_ampcor.py
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import logging
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import isceobj
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import mroipac
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from iscesys.ImageUtil.ImageUtil import ImageUtil as IU
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from isceobj import Constants as CN
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from mroipac.ampcor.Ampcor import Ampcor
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logger = logging.getLogger('isce.isceProc.runOffsetprf')
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def runOffsetprf(self):
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infos = {}
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for attribute in ['patchSize', 'numberValidPulses', 'numberPatches', 'firstSampleAcrossPrf', 'firstSampleDownPrf', 'numberLocationAcrossPrf', 'numberLocationDownPrf']:
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infos[attribute] = getattr(self._isce, attribute)
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for attribute in ['grossRg', 'grossAz', 'sensorName', 'offsetSearchWindowSize']:
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infos[attribute] = getattr(self, attribute)
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refPol = self._isce.refPol
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for sceneid1, sceneid2 in self._isce.pairsToCoreg:
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pair = (sceneid1, sceneid2)
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frame1 = self._isce.frames[sceneid1][refPol]
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orbit1 = self._isce.orbits[sceneid1][refPol]
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formSlc1 = self._isce.formSLCs[sceneid1][refPol]
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imSlc1 = self._isce.slcImages[sceneid1][refPol]
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frame2 = self._isce.frames[sceneid2][refPol]
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orbit2 = self._isce.orbits[sceneid2][refPol]
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formSlc2 = self._isce.formSLCs[sceneid2][refPol]
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imSlc2 = self._isce.slcImages[sceneid2][refPol]
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catalog = isceobj.Catalog.createCatalog(self._isce.procDoc.name)
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sid = self._isce.formatname(pair)
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offsetField = run(frame1, frame2, orbit1, orbit2, formSlc1, formSlc2, imSlc1, imSlc2, infos, catalog=catalog, sceneid=sid)
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self._isce.procDoc.addAllFromCatalog(catalog)
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self._isce.offsetFields[pair] = offsetField
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self._isce.refinedOffsetFields[pair] = offsetField
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def run(frame1, frame2, orbit1, orbit2, formSlc1, formSlc2, imSlc1, imSlc2, infos, catalog=None, sceneid='NO_ID'):
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logger.info("Calculate offset between slcs using ampcor: %s" % sceneid)
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prf1 = frame1.getInstrument().getPulseRepetitionFrequency()
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prf2 = frame2.getInstrument().getPulseRepetitionFrequency()
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nearRange1 = formSlc1.startingRange
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nearRange2 = formSlc2.startingRange
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fs1 = frame1.getInstrument().getRangeSamplingRate()
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###There seems to be no other way of determining image length - Piyush
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patchSize = infos['patchSize']
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numPatches = infos['numberPatches']
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valid_az_samples = infos['numberValidPulses']
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firstAc = infos['firstSampleAcrossPrf']
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firstDown = infos['firstSampleDownPrf']
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numLocationAcross = infos['numberLocationAcrossPrf']
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numLocationDown = infos['numberLocationDownPrf']
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widthSlc = imSlc1.getWidth()
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coarseRange = (nearRange1 - nearRange2) / (CN.SPEED_OF_LIGHT / (2 * fs1))
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coarseAcross = int(coarseRange + 0.5)
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if(coarseRange <= 0):
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coarseAcross = int(coarseRange - 0.5)
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grossRg = infos['grossRg']
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print("gross Rg: ", grossRg)
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if grossRg is not None:
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coarseAcross = grossRg
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time1, schPosition1, schVelocity1, offset1 = orbit1._unpackOrbit()
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time2, schPosition2, schVelocity2, offset2 = orbit2._unpackOrbit()
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s1 = schPosition1[0][0]
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s1_2 = schPosition1[1][0]
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s2 = schPosition2[0][0]
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s2_2 = schPosition2[1][0]
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coarseAz = int(
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(s1 - s2)/(s2_2 - s2) + prf1*(1/prf1 - 1/prf2)*
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(patchSize - valid_az_samples)/2
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)
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coarseDown = int(coarseAz + 0.5)
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if(coarseAz <= 0):
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coarseDown = int(coarseAz - 0.5)
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grossAz = infos['grossAz']
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print("gross Az: ", grossAz)
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if grossAz is not None:
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coarseDown = grossAz
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coarseAcross = 0 + coarseAcross
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coarseDown = 0 + coarseDown
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logger.debug("Gross Across: %s" % (coarseAcross))
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logger.debug("Gross Down: %s" % (coarseDown))
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offAc = max(firstAc,coarseAcross)
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offDn = max(firstDown,coarseDown)
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lastAc = widthSlc - offAc
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lastDown = (numPatches * valid_az_samples) - offDn
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mSlc = isceobj.createSlcImage()
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IU.copyAttributes(imSlc1, mSlc)
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accessMode = 'read'
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mSlc.setAccessMode(accessMode)
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mSlc.createImage()
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sSlc = isceobj.createSlcImage()
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IU.copyAttributes(imSlc2, sSlc)
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accessMode = 'read'
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sSlc.setAccessMode(accessMode)
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sSlc.createImage()
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objAmpcor = Ampcor()
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objAmpcor.setImageDataType1('complex')
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objAmpcor.setImageDataType2('complex')
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objAmpcor.setFirstSampleAcross(offAc)
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objAmpcor.setLastSampleAcross(lastAc)
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objAmpcor.setNumberLocationAcross(numLocationAcross)
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objAmpcor.setFirstSampleDown(offDn)
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objAmpcor.setLastSampleDown(lastDown)
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objAmpcor.setNumberLocationDown(numLocationDown)
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objAmpcor.setAcrossGrossOffset(coarseAcross)
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objAmpcor.setDownGrossOffset(coarseDown)
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objAmpcor.setFirstPRF(prf1)
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objAmpcor.setSecondPRF(prf2)
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if catalog is not None:
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# Record the inputs
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isceobj.Catalog.recordInputs(catalog,
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objAmpcor,
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"runOffsetprf.%s" % sceneid,
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logger,
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"runOffsetprf.%s" % sceneid)
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objAmpcor.ampcor(mSlc,sSlc)
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if catalog is not None:
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# Record the outputs
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isceobj.Catalog.recordOutputs(catalog,
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objAmpcor,
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"runOffsetprf.%s" % sceneid,
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logger,
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"runOffsetprf.%s" % sceneid)
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mSlc.finalizeImage()
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sSlc.finalizeImage()
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return objAmpcor.getOffsetField()
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