# *********************************** PyINT Template *******************************************# # Modifed Sep. , 2019 - YM.Cao # ------------------- Basic parameters ----------------------- DEM = /data/insar/chenwei/SCRATCHDIR/ensishenlongxiT134F058S1A/DEM/srtm.dem # if not provide, SRTM-1 will be downloaded and processed automatically. masterDate = 20180123 # [If not provided, the first date in the date_list will be selected as the master date] start_swath = 2 # [option (for Sentinel-1 only)] end_swath = 3 # [option (for Sentinel-1 only)] start_burst = 3 # [option: bursts position is based on the master image (for Sentinel-1 only)] end_burst = 6 # [option: bursts position is based on the master image (for Sentinel-1 only)] range_looks = 20 # multi-look numbers in range direction azimuth_looks = 4 # multi-look numbers in azimuth direction # ------------------- download data ----------------------- sensor = Sentinel-1A # Envisat, ERS-1/2, .. please check SSARA for details track = 128 # track number of the SAR image frame = 89 # frame number of the SAR image [ defined according to ASF ] start_time = 2017-11-01 # end_time = 2109-01-01 # # ------------------- basic parameters for interferometry ----------------------- dem_lat_ovr = 1 # as to SRTM-1, 0.5 for 60 m, 2 for 15 m dem_lon_ovr = 1 Igram_Spsflg = 1 # Implement range spectral filtering rbw_min = 1 # minimum range bandwidth fraction (0.1 --> 1.0)(default: - 0.250) rwin4cor = 256 # range window length for coregistration azwin4cor = 256 # azimuth window length for coregistration rsample4cor = 32 # range samples used for fitting the coregistration parameters azsample4cor = 32 # azimuth samples used for fitting the coregistration parameters thresh4cor = 0.3 # 2016 GAMMA or higher version, for 2015 GAMMA or lower version should be SNR Igram_Cor_rwin = 5 # range window length for cc_wave coherence estimation Igram_Cor_awin = 5 # azimuth window length for cc_wave coherence estimation Igram_Cor_Win = 5 # cc estimation in adf adf_alpha = 0.4 # adf alpha for Gold-Stein filtering # ------------------- sim phase ----------------------- Igram_Flag_TDM = N # Y for Tandem-X Simphase_rpos = - Simphase_azpos = - Simphase_rwin = 256 Simphase_azwin = 256 Simphase_thresh = - # ------------------- unwrap phase ----------------------- mcf_triangular = 1 # triangular type of mcf [0: regular; 1: delaunay;] unwrap_patr = 1 # unwrap patches in range direction unwrap_pataz = 1 # unwrap patches in azimuth direction unwrapThreshold = 0.25 # coherence threshold used for unwrap auto_unw = 1 # auto or manual to select the reference point. True:auto False: manual make_mask = 1 # make a mask based on the cor file to mask the lower field 0: don't mask 1: make a mask init_flag = 1 # flag to set phase at reference point. 0: use initial point phase value (default) 1: set phase to 0.0 at initial point r_refer = 396 #phase reference point range offset (default(-): roff) a_refer = 537 # phase reference point azimuth offset (default(-): loff) # ------------------- geocode ----------------------- geo_interp = 0 # [0: nearest; 1: bicubic spline] #-------------------- trans phase to los displacement -------------- satelite = S1A # the value of satelite must be one in the list['S1A', 'CSK','TSX','ALSO2','ALOS','ENVISAT'] # ------------------- select interferometric pairs -------------- network_method = sbas # sbas, sequential, delaunay, stars endDate = 20210809 # date before this date will be excluded startDate = 20170320 # date after this date will be excluded conNumb = 2 # connect number for sequential max_tb = 100 # temporal baseline threshold in days max_sb = 100 # spatial baseline threshold in meters #exclude_date = # exclude the date which will not be used # ------------------- time-series process -------------- download_data = 0 # [0: skip; 1: process] down_parallel = 0 # multi-processor number used for downloading raw2slc_all = 0 # i.e., download2slc [0: skip; 1: process] raw2slc_all_parallel = 4 # multi-processor number used extract_burst_all = 0 # for TOPS SLC only [0: skip; 1: process] extract_all_parallel = 1 # multi-processor number used coreg_all = 0 # do coregister [0: skip; 1: process] coreg_all_parallel = 4 # multi-processor number used [4 or 8] select_pairs = 0 # if 0: skip, and use the ifgram_list.txt under PROJECTNAME folder diff_all = 0 # generate differential Ifg [0: skip; 1: process] diff_all_parallel = 4 # multi-processor number used [4 or 8] unwrap_all = 1 # unwrap Ifg [0: skip; 1: process] unwrap_all_parallel = 8 # multi-processor number used [8 or 10] geocode_all = 1 # geocode diff,unw products [0: skip; 1: process] geocode_all_parallel = 4 # multi-processor number used load_data = 0 # loading data for mintpy processing [0: skip; 1: process] # ------------------- Good Luck -------------- DEM= /data/insar/chenwei/SCRATCHDIR/ensishenlongxiT134F058S1A/DEM/ensishenlongxiT134F058S1A.dem DEM= /data/insar/chenwei/SCRATCHDIR/DEM/ensishenlongxiT134F058S1A/ensishenlongxiT134F058S1A.dem DEM= /data/insar/chenwei/SCRATCHDIR/DEM/ensishenlongxiT134F058S1A/ensishenlongxiT134F058S1A.dem DEM= /data/insar/chenwei/SCRATCHDIR/DEM/ensishenlongxiT134F058S1A/ensishenlongxiT134F058S1A.dem