Changes for page The FLASH HDF5 structure
Last modified by sndueste on 2025/02/06 10:55
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... ... @@ -8,9 +8,9 @@ 8 8 9 9 == General information about HDF5 == 10 10 11 -HDF5 is a data format maintained by the HDF group. For detailed general information see [[here~[~[image:url:http://hasfweb.desy.de/pub/TWiki/TWikiDocGraphics/external-link.gif~|~|width="13" height="12"~]~]>>url:https:// www.hdfgroup.org/HDF5/||shape="rect"]]11 +HDF5 is a data format maintained by the HDF group. For detailed general information see [[here~[~[image:url:http://hasfweb.desy.de/pub/TWiki/TWikiDocGraphics/external-link.gif~|~|width="13" height="12"~]~]>>url:https://portal.hdfgroup.org/display/support||shape="rect"]] 12 12 13 -To download the HDF5 Viewer click [[here~[~[image:url:http://hasfweb.desy.de/pub/TWiki/TWikiDocGraphics/external-link.gif~|~|width="13" height="12"~]~]>>url:https:// support.hdfgroup.org/products/java/hdfview/index.html||shape="rect"]]13 +To download the HDF5 Viewer click [[here~[~[image:url:http://hasfweb.desy.de/pub/TWiki/TWikiDocGraphics/external-link.gif~|~|width="13" height="12"~]~]>>url:https://portal.hdfgroup.org/display/support/Download+HDFView||shape="rect"]] 14 14 15 15 For use on the DESY Maxwell or PAL (max-fsc or pal) **hdfview** is available in the xray module : 16 16 {{code language="none"}}> module load xray{{/code}} ... ... @@ -18,25 +18,78 @@ 18 18 19 19 [[Contents>>doc:||anchor="Contents"]] 20 20 21 -== FLASHHDF5structure==21 +== The new (starting 2021) HDF5 format == 22 22 23 - The photon diagnostic, electron diagnostic and beamline information as well as the information about the pump-probe laser and the infrastructure offered for users (GHz/MHz ADCs) can be included in one HDF5 file which is organised according to train IDs. The general structure is:23 +\\ 24 24 25 +FLASH provides a conversion of its data acquisition (DAQ) to the commonly used [[HDF5>>url:https://www.hdfgroup.org/solutions/hdf5/||shape="rect"]] format. Correlated data are mapped by a primary index called **train ID**. Every data set has an individual index of train IDs to identify the data even when data are missing or deviate in update rate.If the data set of choice contains gaps, users have to decide how to treat missing values. DAQ channels are spread across various files with one file name pattern for each DAQ. This means users have to assemble data from different files if necessary. 26 + 27 +The hierarchy is realized using a human readable named HDF tree with each DAQ channel containing the data sets "//value//" and "//index//". Additionally, the HDF group //zraw// contains a tree of the original DAQ channel names. 28 + 29 +Reference implementation, which follows the concept of Python libraries like Pandas, Xarray, or Dask, is given below. 30 + 31 +\\ 32 + 33 +{{expand title="Discontinued HDF formats"}} 34 +== Comparison to FLASH's deprecated HDF formats == 35 + 36 +Before 2021, FLASH provided two different HDF formats formally known as //near-online// and //offline// HDF files. 37 + 38 +All data sets were aligned by the same global index by filling in missing data. Fast DAQ channels (pulse synchronous data - update 10 Hz) are filled in by NaN or 0, slow channels (not pulse synchronous data - update e.g. 1 Hz ) are interpolated by the DAQs libraries, by keeping the value constant up to the next change. 39 + 40 +While the near-online HDF files were converted live during the beamtime, the offline HDF files were manually compiled weeks/months later. Near-online HDF files were used by a provided API [[BeamtimeDaqAccess>>url:https://confluence.desy.de/display/FLASHUSER/Near-Online+data+analysis#Near-Onlinedataanalysis-BriefUserGuidetoBeamtimeDAQAccess||shape="rect"]], which also searches for DAQ channels in files. With assembled files "by run", all DAQ channels were existing in the same HDF file. While shorter runs usually fitted into one file, longer runs still had to be aggregated over several files. The creation of the assembled type of files still involves the use of fairly unstable DAQ Mex-functions As the environment required for using the Mex-functions is already deprecated, its continued existence is uncertain. 41 + 42 +The HDF hierarchy is almost identical in all formats. While in the the recent format each DAQ channel contains the data sets "value" and "index", the deprecated format had one data set for each DAQ channel. The deprecated formats supplies no time axis parameters for spectra data types. 43 +{{/expand}} 44 + 45 +== HDF excerpt: == 46 + 47 +* ADC data as example for **fast** **data** (10 Hz): [[image:attach:image2020-11-16_15-26-28.png||height="250"]] 48 +* The //average// FEL pulse energy as example for the **slow** **data** (different e.g. 1 Hz):[[image:attach:image2020-11-16_15-31-45.png||height="250"]] 49 + 50 + ( every 10th train ID is listed in the HDF group "index") 51 + 52 +* ((( 53 +//zraw// group contains the **original DAQ (DOOCS) names[[image:attach:image2020-11-16_16-26-3.png||thumbnail="true" height="250"]]** 54 +))) 55 + 56 + of the properties saved in the DESY internal raw format. (For experts) 57 + 58 +\\ 59 + 60 +\\ 61 + 62 +{{info title="Sample scripts in python"}} 63 +== Reference implementation (Python) == 64 + 65 +[[~[~[image:attach:binder_badge.png~|~|thumbnail="true" width="120"~]~]>>url:https://mybinder.org/v2/git/https%3A%2F%2Fgitlab.desy.de%2Fchristopher.passow%2Fflash-daq-hdf/master||shape="rect"]] 66 + 67 +(% class="Object" %)[[https:~~/~~/gitlab.desy.de/christopher.passow/flash-daq-hdf>>url:https://gitlab.desy.de/christopher.passow/flash-daq-hdf||shape="rect"]] 68 +{{/info}} 69 + 70 +\\ 71 + 72 +\\ 73 + 74 +== The discontinued (till 2021) FLASH HDF5 structure == 75 + 76 +The photon diagnostic, electron diagnostic and beamline information as well as the information about the pump-probe laser and the infrastructure offered for users (GHz/MHz ADCs) can be included in one HDF5 file which is organized according to train IDs. The general structure is: 77 + 25 25 * Electron Diagnostic 26 26 * Photon Diagnostics 27 27 * Beamlines 28 28 * Experiment 29 29 * Timing 30 -[[ ~[~[image:url:http://hasfweb.desy.de/pub/Setup/HDF5main/HDF5_structure.jpg~|~|alt="HDF5_structure.jpg" width="700" height="500"~]~]>>attach:HDF5_structure.jpg]]83 +[[image:attach:HDF5_structure.jpg||height="400"]] 31 31 32 -A detail led description of (most) channels can be found in the lower part of the hdf5 viewer:33 -[[ ~[~[image:url:http://hasfweb.desy.de/pub/Setup/HDF5main/HDF5_structure_desc.jpg~|~|alt="HDF5_structure_desc.jpg"width="341" height="413"~]~]>>attach:HDF5_structure_desc.jpg]]85 +A detailed description of (most) channels can be found in the lower part of the hdf5 viewer: 86 +[[image:attach:HDF5_structure_desc.jpg||thumbnail="true" height="250"]] 34 34 35 35 [[Contents>>doc:||anchor="Contents"]] 36 36 37 37 \\ 38 38 39 -== HDF5 example files == 92 +=== HDF5 example files (old format) === 40 40 41 41 Here we have a few HDF5 samples (User data combined with Photon diagnostics data) from a few beamtimes showing the different kind options. 42 42 ... ... @@ -54,8 +54,6 @@ 54 54 55 55 \\ 56 56 57 -\\ 58 - 59 59 == Most popular FLASH parameters and their names in HDF5, DOOCS and (raw) DAQ == 60 60 61 61 {{id name="DOOCSparameters"/}} ... ... @@ -145,12 +145,14 @@ 145 145 146 146 \\ 147 147 148 -==== Photon Diagnostics SASE ([[GMD>>url:http://photon-science.desy.de/facilities/flash/photon_diagnostics/gmd_intensity_and_position/index_eng.html||shape="rect"]]) / Spectrometer (FLASH1)====199 +==== Photon Diagnostics SASE ([[GMD>>url:http://photon-science.desy.de/facilities/flash/photon_diagnostics/gmd_intensity_and_position/index_eng.html||shape="rect"]]) ==== 149 149 201 +\\ 202 + 203 +(% style="color: rgb(0,0,0);" %)**Discontinued GMD data recording / evaluation (VME + PhotonFlux ML server)** 204 + 150 150 {{code language="none"}}/FL1/Photon Diagnostic/GMD/Average energy/energy tunnel{{/code}} 151 -//always saved (PBD)// 152 -(% style="color: rgb(165,173,186);" %)New MTCA Version: DOOCS prop : {{code language="none"}}FLASH.FEL/XGM.PHOTONFLUX/FL1.TUNNEL/PHOTONFLUX.UJ{{/code}} (%%) 153 -(% style="color: rgb(165,173,186);" %)New MTCA Version: DAQ channel: {{code language="none"}}FLASH.FEL/XGM.PHOTONFLUX/FL1.TUNNEL/PHOTONFLUX.UJ{{/code}} 206 +//always saved (PBD)// 154 154 155 155 (% style="color: rgb(0,0,0);" %)DOOCS prop : {{code language="none"}}TTF2.DAQ/PHFLUX/OUT04/VAL{{/code}} (%%) 156 156 (% style="color: rgb(0,0,0);" %)DAQ channel: {{code language="none"}}PBD.PHFLUX/TUNNEL.ENPULSEIC{{/code}}(%%) ... ... @@ -160,9 +160,6 @@ 160 160 {{code language="none"}}/FL1/Photon Diagnostic/GMD/Pulse resolved energy/energy tunnel{{/code}} 161 161 //always saved (PBD)// 162 162 163 -(% style="color: rgb(193,199,208);" %)New MTCA Version: DOOCS prop : 164 -{{code language="none"}}FLASH.FEL/XGM.INTENSITY/FL1.TUNNEL/INTENSITY.TD{{/code}}New MTCA Version: DAQ channel: {{code language="none"}}FLASH.FEL/XGM.INTENSITY/FL1.TUNNEL/INTENSITY.TD{{/code}} 165 - 166 166 DOOCS prop : {{code language="none"}}TTF2.DAQ/PHFLUX/OUT34/VAL{{/code}} 167 167 DAQ channel: {{code language="none"}}PBD.PHFLUX/TUNNEL.ENERGYPULSE.USER{{/code}} 168 168 desc :Energy per pulse Tunnel (from e-) - the values are set to "0" if there was no SASE beam in the FEL ... ... @@ -178,9 +178,6 @@ 178 178 {{code language="none"}}/FL1/Photon Diagnostic/GMD/Average energy/energy BDA{{/code}} 179 179 //always saved (PBD)// 180 180 181 -(% style="color: rgb(165,173,186);" %)New MTCA Version: DOOCS prop : {{code language="none"}}FLASH.FEL/XGM.PHOTONFLUX/FL1.BDA/PHOTONFLUX.UJ{{/code}} (%%) 182 -(% style="color: rgb(165,173,186);" %)New MTCA Version: DAQ channel: {{code language="none"}}FLASH.FEL/XGM.PHOTONFLUX/FL1.BDA/PHOTONFLUX.UJ{{/code}} 183 - 184 184 DOOCS prop : {{code language="none"}}TTF2.DAQ/PHFLUX/OUT05/VAL{{/code}} 185 185 DAQ channel: {{code language="none"}}PBD.PHFLUX/BDA.ENPULSEIC{{/code}} 186 186 desc : calibrated average SASE Energy/pulse measured in the BDA (in the experimental hall) after the attenuator (ion current) ... ... @@ -189,8 +189,6 @@ 189 189 {{code language="none"}}/FL1/Photon Diagnostic/GMD/Pulse resolved energy/energy BDA{{/code}} 190 190 //always saved (PBD)// 191 191 192 -(% style="color: rgb(193,199,208);" %)New MTCA Version: DOOCS prop : 193 -{{code language="none"}}FLASH.FEL/XGM.INTENSITY/FL1.BDA/INTENSITY.TD{{/code}}New MTCA Version: DAQ channel: {{code language="none"}}FLASH.FEL/XGM.INTENSITY/FL1.BDA/INTENSITY.TD{{/code}}(%%) 194 194 DOOCS prop : {{code language="none"}}TTF2.DAQ/PHFLUX/OUT35/VAL{{/code}} 195 195 DAQ channel: {{code language="none"}}PBD.PHFLUX/BDA.ENERGYPULSE.USER{{/code}} 196 196 desc :Energy per pulse BDA (from e-) - the values are set to "0" if there was no SASE beam in the FEL ... ... @@ -205,6 +205,55 @@ 205 205 206 206 \\ 207 207 253 +(% style="color: rgb(0,0,0);" %)**NEW (2021) GMD data recording / evaluation (MTCA, analog to FLASH2 and XFEL)** 254 + 255 +{{code language="none"}}/FL1/Photon Diagnostic/GMD/Average energy/energy tunnel{{/code}} 256 +//always saved (PBD)// 257 +(% style="color: rgb(0,0,0);" %)DOOCS prop : {{code language="none"}}FLASH.FEL/XGM.PHOTONFLUX/FL1.TUNNEL/PHOTONFLUX.UJ{{/code}} (%%) 258 +(% style="color: rgb(0,0,0);" %)DAQ channel: {{code language="none"}}FLASH.FEL/XGM.PHOTONFLUX/FL1.TUNNEL/PHOTONFLUX.UJ{{/code}} 259 + 260 +desc : calibrated average SASE Energy/pulse measured in the TUNNEL upstream the gas attenuator 261 +units : microJ 262 + 263 +\\ 264 + 265 +{{code language="none"}}/FL1/Photon Diagnostic/GMD/Pulse resolved energy/energy tunnel{{/code}} 266 +//always saved (PBD)// 267 + 268 +(% style="color: rgb(0,0,0);" %)DOOCS prop : 269 +{{code language="none"}}FLASH.FEL/XGM.INTENSITY/FL1.TUNNEL/INTENSITY.TD{{/code}}DAQ channel: {{code language="none"}}FLASH.FEL/XGM.INTENSITY/FL1.TUNNEL/INTENSITY.TD{{/code}} 270 + 271 +desc : Energy per pulse measured in the Tunnel. In addition measurement errors and beam position are included for EACH pulse in the pulse train !! (see below) 272 +units : a.u. (more or less µJ but need to be calibrated with the "Average energy" for good precision)** [[see here for help>>doc:FLASHUSER.jddd-linked help pages.Calibrating the pulse resolved (electron) data from GMD.WebHome]]** 273 + 274 +{{info title="GMD pulse resolved data structure"}} 275 +For every pulse in the pulse train the information is saved: 276 + 277 + 278 +1. **Intensity per pulse** (a.u. (more or less µJ )) 279 +1. Intensity per pulse (auxillary GMD) - not used 280 +1. Position horizontal (mm, for a single pulse the position information may be very noisy - talk to your local contact) 281 +1. Position vertical (mm, for a single pulse the position information may be very noisy - talk to your local contact) 282 +1. **Intensity per pulse sigma** (a.u. (more or less µJ ), (% style="color: rgb(0,0,0);" %)This parameter gives an indication of the error of the measurement of the pulse energy. This takes signal to noise, detector resolution, uncertainties in crossection etc into account. (it is NOT the measurement of the statistical fluctuation of the SASE pulses)(%%)) 283 +1. Position horizontal sigma (mm, indicates the error (RMS, sigma) of the measurement according to known uncertainties and signal to noise) 284 +1. Position vertical sigma (mm, indicates the error (RMS, sigma) of the measurement according to known uncertainties and signal to noise) 285 +1. Combined warning and error flags 286 + 287 +The pulse energy and the error are plotted for the first bunch of the pulse trains saved in this 288 +file 289 + 290 + 291 +[[image:attach:image2021-2-9_10-51-6.png||height="250"]] 292 + 293 +\\ 294 +{{/info}} 295 + 296 +All values for the GMD are also available for the** BDA GMD **which is located in the experimental hall down stream the gas attenuator. If the attenuator is on the ratio between BDA and Tunnel signal shows the attenuation. **BUT NOTE** that the filter units are downstream the GMD. So if filters are used this influence is NOT measured by the GMD BDA ! 297 + 298 +\\ 299 + 300 +Besides pulse energy the GMD also provides information about the beam position 301 + 208 208 {{code language="none"}}/FL1/Photon Diagnostic/GMD/Beam position/position BDA horizontal{{/code}} 209 209 //always saved (PBD)// 210 210 DOOCS prop : {{code language="none"}}FLASH.FEL/XGM.POSMON/FL1.BDA/IX.POS{{/code}} ... ... @@ -233,6 +233,10 @@ 233 233 desc :Beam position of the photon Beam determined by the GMD (TUNNEL, y=vertical) 234 234 units : mm 235 235 330 +\\ 331 + 332 +==== Spectrometer (FLASH1) ==== 333 + 236 236 {{code language="none"}}/FL1/Photon Diagnostic/Wavelength/Tunnelspectrometer/wavelength{{/code}} 237 237 _always saved (when Spectrum is measured !!) (PBD) _ 238 238 DOOCS prop : {{code language="none"}}TTF2.EXP/PHOTONWL.ML/WAVE_LENGTH/VAL.TD{{/code}} ... ... @@ -363,7 +363,7 @@ 363 363 ===== electron bunch energy ===== 364 364 365 365 {{code language="none"}}/FL1/Electron Diagnostic/Electron energy/average electron energy{{/code}} 366 - _always saved (PBD)464 +//always saved (PBD)// 367 367 DOOCS prop : {{code language="none"}}TTF2.DAQ/ENERGY.DOGLEG/E_INTRA_MEAN/VAL{{/code}} 368 368 DAQ channel: {{code language="none"}}PBD.ENERGY.DOGLEG/E_MEAN{{/code}} 369 369 desc: electron bunch energy (average over the bunch train) ... ... @@ -371,7 +371,7 @@ 371 371 \\ 372 372 373 373 {{code language="none"}}/FL1/Electron Diagnostic/Electron energy/pulse resolved energy{{/code}} 374 - _always saved (PBD)472 +//always saved (PBD)// 375 375 DOOCS prop : {{code language="none"}}TTF2.DAQ/ENERGY.DOGLEG/E_SPECT/VAL.TD{{/code}} 376 376 DAQ channel: {{code language="none"}}PBD.ENERGY.DOGLEG/E_SPECT{{/code}} 377 377 desc: electron bunch energy bunch resolved ... ... @@ -380,7 +380,7 @@ 380 380 \\ 381 381 382 382 {{code language="none"}}/FL1/Electron Diagnostic/Electron energy/wavelength bunch train average{{/code}} 383 - _always saved (PBD)481 +//always saved (PBD)// 384 384 DOOCS prop : {{code language="none"}}TTF2.DAQ/ENERGY.DOGLEG/LAMBDA_MEAN/VAL{{/code}} 385 385 DAQ channel: {{code language="none"}}PBD.ENERGY.DOGLEG/LAMBDA_MEAN{{/code}} 386 386 desc: Wavelength calculated by the electron bunch energy (average over the bunch train) (FLASH1) ... ... @@ -574,12 +574,12 @@ 574 574 575 575 ==== Beamline info (FLASH2) ==== 576 576 577 - (% style="color: rgb(255,153,0);" %)(not yet available){{code language="none"}}/FL2/Beamlines/Attenuator/pressure(%%)578 -(% style="color: rgb( 193,199,208);" %)//always saved (PBD2)// (%%)579 -(% style="color: rgb( 193,199,208);" %)DOOCS prop : {{code language="none"}}FLASH.FEL/ATT.GAS_DOSING/FL2.HALL/PRESSURE{{/code}} (%%)580 -(% style="color: rgb( 193,199,208);" %)DAQ channel: {{code language="none"}}FLASH.FEL/ATT.GAS_DOSING/FL2.HALL/PRESSURE{{/code}} (%%)581 -(% style="color: rgb( 193,199,208);" %)desc: set pressure in the gas attenuator (%%)582 -(% style="color: rgb( 193,199,208);" %)units: mbar(%%)675 +{{code language="none"}}/FL2/Beamlines/Attenuator/pressure {{/code}} 676 +(% style="color: rgb(0,0,0);" %)//always saved (PBD2)// (%%) 677 +(% style="color: rgb(0,0,0);" %)DOOCS prop : {{code language="none"}}FLASH.FEL/ATT.GAS_DOSING/FL2.HALL/PRESSURE{{/code}} (%%) 678 +(% style="color: rgb(0,0,0);" %)DAQ channel: {{code language="none"}}FLASH.FEL/ATT.GAS_DOSING/FL2.HALL/PRESSURE{{/code}} (%%) 679 +(% style="color: rgb(0,0,0);" %)desc: set pressure in the gas attenuator (%%) 680 +(% style="color: rgb(0,0,0);" %)units: mbar(%%) 583 583 \\ 584 584 585 585 {{code language="none"}}/FL2/Beamlines/FL20/Shutter/open{{/code}} ... ... @@ -598,11 +598,13 @@ 598 598 units: degree 599 599 \\ 600 600 699 +/FL2/Beamlines/Filter wheel/position wheel 2 700 +always saved (PBD2) 701 +DOOCS prop : {{code language="none"}}FLASH.FEL/FL20H.PH.MOTOR/MOTOR2.MOT3/FPOS{{/code}} 702 +DAQ channel: {{code language="none"}}FLASH.FEL/FL20H.PH.MOTOR/MOTOR2.MOT3/FPOS{{/code}} 703 +desc: Position of the BL filter wheel 2 - to correlate with the filter material please look [[here>>doc:FLASHUSER.jddd-linked help pages.Filter-Units.Filter wheels in FLASH1 and FLASH2.WebHome]] 704 +units: degree 601 601 602 -//always saved (PBD2)// 603 -\\\\**[[here>>doc:FLASHUSER.jddd-linked help pages.Filter-Units.Filter wheels in FLASH1 and FLASH2.WebHome]]** 604 -{{code language="none"}}/FL2/Beamlines/Filter wheel/position wheel 2 DOOCS prop : FLASH.FEL/FL20H.PH.MOTOR/MOTOR2.MOT3/FPOS DAQ channel: FLASH.FEL/FL20H.PH.MOTOR/MOTOR2.MOT3/FPOS desc: Position of the BL filter wheel 2 - to correlate with the filter material please look units: degree{{/code}} 605 - 606 606 \\ 607 607 608 608 NOTE: Aperture positions in the beamline as well as the positions of the beam steering mirrors are also saved. for more Info contact your local contact ... ... @@ -624,40 +624,37 @@ 624 624 625 625 \\ 626 626 627 -(% style="color: rgb(255,204,0);" %)average Sigma to be included in 628 - 629 -(% style="color: rgb(193,199,208);" %){{code language="none"}}/FL2/Photon Diagnostic/GMD/Average energy/energy tunnel uncertainty{{/code}} (%%) 630 -(% style="color: rgb(193,199,208);" %)//always saved (PBD2)// (%%) 631 -(% style="color: rgb(193,199,208);" %)DOOCS prop : FLASH.FEL/XGM.PHOTONFLUX/FL2.TUNNEL/PHOTONFLUX.UJ.SIGMA (%%) 632 -(% style="color: rgb(193,199,208);" %)DAQ channel: FLASH.FEL/XGM.PHOTONFLUX/FL2.TUNNEL/PHOTONFLUX.UJ.SIGMA (%%) 633 -(% style="color: rgb(193,199,208);" %)desc : This parameter gives an indication of the error of the measurement of the average pulse energy. This takes signal to noise, detector resolution, uncertainties in crossection etc into account. (it is NOT the measurement of the statistical fluctuation of the SASE pulses)(%%) 634 -(% style="color: rgb(193,199,208);" %)units : microJ 635 - 636 -\\ 637 - 638 -\\ 639 - 640 640 {{code language="none"}}/FL2/Photon Diagnostic/GMD/Pulse resolved energy/energy tunnel{{/code}} 641 641 //always saved (PBD2)// 642 642 DOOCS prop : {{code language="none"}}FLASH.FEL/XGM.INTENSITY/FL2.TUNNEL/INTENSITY.TD{{/code}} 643 643 DAQ channel: {{code language="none"}}FLASH.FEL/XGM.INTENSITY/FL2.TUNNEL/INTENSITY.TD{{/code}} 644 -desc : Energy per pulse measured in the Tunnel (in fro mt of the gas attenuator and the apertures in the Hall)731 +desc : Energy per pulse measured in the Tunnel (in front of the gas attenuator and the apertures in the Hall) In addition measurement errors and beam position are included for EACH pulse in the pulse train !! (see below) 645 645 units : a.u. (more or less µJ but need to be calibrated with the "Average energy" for good precision)** [[see here for help>>doc:FLASHUSER.jddd-linked help pages.Calibrating the pulse resolved (electron) data from GMD.WebHome]]** 646 646 647 -\\ 734 +{{info title="GMD pulse resolved data structure"}} 735 +For every pulse in the pulse train the information is saved: 736 + 648 648 649 -\\ 738 +1. **Intensity per pulse** (a.u. (more or less µJ )) 739 +1. Intensity per pulse (auxillary GMD) - not used 740 +1. Position horizontal (mm, for a single pulse the position information may be very noisy - talk to your local contact) 741 +1. Position vertical (mm, for a single pulse the position information may be very noisy - talk to your local contact) 742 +1. **Intensity per pulse sigma** (a.u. (more or less µJ ), (% style="color: rgb(0,0,0);" %)This parameter gives an indication of the error of the measurement of the pulse energy. This takes signal to noise, detector resolution, uncertainties in crossection etc into account. (it is NOT the measurement of the statistical fluctuation of the SASE pulses)(%%)) 743 +1. Position horizontal sigma (mm, indicates the error (RMS, sigma) of the measurement according to known uncertainties and signal to noise) 744 +1. Position vertical sigma (mm, indicates the error (RMS, sigma) of the measurement according to known uncertainties and signal to noise) 745 +1. Combined warning and error flags 650 650 651 -{{code language="none"}}/FL2/Photon Diagnostic/GMD/Pulse resolved energy/energy tunnel uncertainty (sigma){{/code}} 652 -//always saved (PBD2)// 653 -DOOCS prop : {{code language="none"}}FLASH.FEL/XGM.INTENSITY/FL2.TUNNEL/INTENSITY.SIGMA.TD{{/code}} 654 -DAQ channel: {{code language="none"}}FLASH.FEL/XGM.INTENSITY/FL2.TUNNEL:4{{/code}} 655 -desc :(% style="color: rgb(0,0,0);" %)This parameter gives an indication of the error of the measurement of the pulse energy. This takes signal to noise, detector resolution, uncertainties in crossection etc into account. (it is NOT the measurement of the statistical fluctuation of the SASE pulses)(%%) 656 -units : a.u. (more or less µJ - related to the value of the pulse energy ) 747 +The pulse energy and the error are plotted for the first bunch of the pulse trains saved in this 748 +file 657 657 750 + 751 +[[image:attach:image2021-2-9_10-51-6.png||height="250"]] 658 658 659 -{{code language="none"}}{{/code}} 753 +\\ 754 +{{/info}} 660 660 756 +\\ 757 + 661 661 All values for the GMD are also available for the** HALL GMD **which is located in the experimental hall down stream the gas attenuator. If the attenuator is on the ratio between Hall and Tunnel signal shows the attenuation. **BUT NOTE** that the filter unit and the Aperture 4 are downstream the GMD. So if filters and aperture are used this influence is NOT measured by the GMD hall ! 662 662 663 663 \\ ... ... @@ -684,13 +684,15 @@ 684 684 685 685 \\ 686 686 784 +/FL2/Photon Diagnostic/GMD/Pulse resolved beam position/position tunnel x 785 +always saved (PBD2) 786 +DOOCS prop : FLASH.FEL/XGM.BPM/FL2.HALL/X.TD 787 +DAQ channel: FLASH.FEL/XGM.BPM/FL2.HALL:2 788 +desc: Besides the well calibrated averaged beam position information there is also the option to measure the beam position on a single bunch level. HOWEVER this methide needs a perfectly adjusted signal level (talk to your local contact !!) and also then the signal to noise is rather small and one needs some averaging ... BUT with this option one can determine if there was a spatial slope on a burst (say forst bunches were lower than the last ones or so ...) 789 +units : mm 687 687 688 -//always saved (PBD2)// 689 -\\\\{{code language="none"}}/FL2/Photon Diagnostic/GMD/Pulse resolved beam position/position tunnel x DOOCS prop : FLASH.FEL/XGM.BPM/FL2.HALL/X.TDDAQ channel: FLASH.FEL/XGM.BPM/FL2.HALL:2 desc: {{/code}}Besides the well calibrated averaged beam position information there is also the option 690 -{{code language="none"}}to measure the beam position on a single bunch level. HOWEVER this methide needs a perfectly adjusted signal level (talk to your local contact !!) and also then the signal to noise is rather small and one needs some averaging ... BUT with this option one can determine if there was a spatial slope on a burst (say forst bunches were lower than the last ones or so ...)units : mm {{/code}} 791 +(x=horizontal, y = vertial) 691 691 692 -{{code language="none"}}(x=horizontal, y = vertial){{/code}} 693 - 694 694 again the same parameter set is available for the **HALL GMD** 695 695 696 696 \\ ... ... @@ -1091,67 +1091,14 @@ 1091 1091 1092 1092 \\ 1093 1093 1094 -== =Samples how to readHDF5with Matlab===1193 +== HDF5 and DOOCS == 1095 1095 1096 - Thexamples applytoHDFfileswithHDF treeversionbeforevers. 0.3.0.1195 +Here is an outdated [[list with the available properties that are always saved (PBD) for FLASH1 as>>attach:FLASH1__DaqChannel2HdfNamePbd.xlsx]] HDF5 names and the corresponding DOOCS names 1097 1097 1098 - (% style="color: rgb(0,128,0);" %)%% read inheeeded data p=path; path(p,'D:\mess-daten\DAQ-data\hdf5\Gotthard') % add the actual folder to the path hdf5file='FLASH1_EXP-2016-03-16T1420.h5'; % data with Gotthard and VLS1197 +[[Contents>>doc:||anchor="Contents"]] 1099 1099 1100 -(% style="color: rgb(0,128,0);" %)% h5disp(hdf5file,'/','min') % to get an idea what is in the file % h5info(hdf5file,'/Experiment/Gotthard1/BL.0') % get info about the individual channel 1101 - 1102 -(% style="color: rgb(0,128,0);" %)% read a Number per 10 Hz pulse train: 1103 - 1104 -(% class="code" %) 1105 -((( 1106 -FEL_Wavelength_energy_server=h5read(hdf5file,'/Photon Diagnostic/Wavelength/Calculated by energy/wavelength' ); 1107 -))) 1108 - 1109 -(% style="color: rgb(0,128,0);" %)% read in a 1D array (spectrum) %GMD data GMD_Spectrum=h5read(hdf5file,'/Photon Diagnostic/GMD/Pulse resolved energy/energy BDA'); 1110 - 1111 -(% style="color: rgb(0,128,0);" %)% This reads in all the data . One can also limit the amount of data read to a subset of the data stored in the file. e.g. for image Data (Gotthard) 1112 - 1113 1113 \\ 1114 1114 1115 -(% class="code" %) 1116 -((( 1117 -Start_event= 500 ; % define the first 10 Hz event 1118 - Number_of_events = 20; % how many 10 Hz events to load 1119 -))) 1120 - 1121 -(% style="color: rgb(0,128,0);" %)% read only part of the data: 1122 - 1123 -(% class="code" %) 1124 -((( 1125 -Gotthard_data=h5read(hdf5file,'/Experiment/Gotthard1/BL.0',[2 650 Start_event],[50 85 Number_of_events]); 1126 -))) 1127 - 1128 -(% style="color: rgb(0,128,0);" %)% start stop increment "manual" for 2 D data : [start bunch number in Gotthard data start pixelin spectrum start sample in 10 Hz trains], % [number of bunches in the Gotthard data number of points in the spectrum number of spectra ] 1129 - 1130 -(% class="code" %) 1131 -((( 1132 -VLS_Spectrum=h5read(hdf5file,'/Photon Diagnostic/Wavelength/VLS online spectrometer/PCO.ROI.X',[400 Start_event],[200 Number_of_events] ); 1133 - 1134 -))) 1135 - 1136 -(% style="color: rgb(0,128,0);" %)% start stop increment "manual" for 1D data : [start sample in the spectrum start sample in 10 Hz trains],[number of points in the spectrum number of spectra ] 1137 - 1138 -(% style="color: rgb(0,128,0);" %)%GMD data 1139 - 1140 -(% class="code" %) 1141 -((( 1142 -GMD_Spectrum=h5read(hdf5file,'/Photon Diagnostic/GMD/Pulse resolved energy/energy BDA',[1 Start_event],[40 Number_of_events] ); 1143 -))) 1144 - 1145 -[[Contents>>doc:||anchor="Contents"]] 1146 - 1147 -=== How to read HDF5 with Python via FLASHH5 === 1148 - 1149 -With [[FlashH5>>doc:FLASHUSER.FLASHH5 for easier access of FLASH's HDF5 files]] we provide h5py based examples to access and evaluate FLASH's HDF5 files. 1150 - 1151 1151 \\ 1152 1152 1153 -== HDF5 and DOOCS == 1154 - 1155 -Here is an outdated [[list with the available properties that are always saved (PBD) for FLASH1 as>>attach:FLASH1__DaqChannel2HdfNamePbd.xlsx]] HDF5 names and the corresponding DOOCS names 1156 - 1157 -[[Contents>>doc:||anchor="Contents"]] 1203 +\\