Differences between revisions 53 and 54
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  || 9 || 1260688800 || 1260689472 || 672|| ||
  || 10 || 1260752128 || 1260752864 || 736|| we can observe strong peak around 40 Hz ||
  || 9 || 1260688800 || 1260689472 || 672|| we can observe strong peak around 40 Hz ||
  || 10 || 1260752128 || 1260752864 || 736|| ||
Line 70: Line 70:
  || 27 || 1260879616 || 1260889216 || 9600|| ||   || 27 || 1260879616 || 1260906144 || 26528|| ||
  || 28 || 1260907072 || 1260914208 || 7136|| ||
  || 29 || 1260914688 || 1260921152 || 6464|| ||
  || 30 || 1260921632 || 1260980896 || 59264|| ||
  || 31 || 1260981376 || 1261001696 || 20320|| ||
  || 32 || 1261002304 || 1261008096 || 5792|| ||
  || 33 || 1261008576 || 1261012320 || 3744|| ||
  || 34 || 1261012928 || 1261070400 || 57472|| ||
  || 35 || 1261071616 || 1261073664 || 2048|| ||
  || 36 || 1261074144 || 1261077792 || 3648|| ||
  || 37 || 1261079488 || 1261090080 || 10592|| ||
  || 38 || 1261090560 || 1261090752 || 192|| ||
  || 39 || 1261091936 || 1261093888 || 1952|| ||
  || 40 || 1261094496 || 1261094880 || 384|| ||
  || 41 || 1261096448 || 1261114944 || 18496|| ||
  || 42 || 1261115392 || 1261117696 || 2304|| ||
  || 43 || 1261119712 || 1261125024 || 5312|| ||
  || 44 || 1261125632 || 1261154016 || 28384|| ||
  || 45 || 1261154464 || 1261157728 || 3264|| ||
  || 46 || 1261158336 || 1261158656 || 320|| ||
  || 47 || 1261159584 || 1261162432 || 2848|| ||
  || 48 || 1261162880 || 1261163648 || 768|| ||
  || 49 || 1261164256 || 1261164480 || 224|| ||
  || 50 || 1261169184 || 1261170976 || 1792|| ||
  || 51 || 1261172256 || 1261180832 || 8576|| ||

Engineering Run 3

Date

  • JST time : Dec. 17, 2019, 17:00 -- Dec. 24, 2019, 9:00
  • GPS : 1260604818 -- 1261180818

  • KAGRA full data
    • m31:/data/full : Full KAGRA data
  • Low latency data
    • m31:/data/ll_merged/ : Low latency data packed in 4096 seconds
    • hydra:/data/ll_merged/ : Low latency data packed in 4096 seconds
    • hydra: /data/ll-sharing/shm/llhoft/ : Low latency data (1 second) dumped from shared memory (retained only for 8192 seconds)
  • h(t) channel name
    • full : K1:CAL-CS_PROC_C00_STRAIN_DBL_DQ

    • ll_merged : K1:DCS-CALIB_STRAIN_C10

  • lock flag
    • definition : K1:GRD-LSC_LOCK_STATE_N = 1000

    • Based on this definition, detchar group provides the segment file in m31-01
    • such as /home/detchar/Segments/SegmentList_FPMI_UTC_2019-12-17.txt
  • data quality vector
    • channel name : K1:DET-DQ_STATE_VECTOR

    • the definition of DQV in full data : definition

    • the definition of DQV in ll_merged data is same as full data.
  • CBC lock segments until 2019/12/18 JST.

    • We checked lock flag of each data and collected the locked data. We considered lock segments by file units for convenience. If compared with lock segment(DetChar), this lock segment is small slightly.

  • index

    start GPS

    stop GPS

    duration

    comment

    0

    1260604832

    1260622368

    17536

    1

    1260622976

    1260649952

    26976

    2

    1260650400

    1260661888

    11488

    3

    1260662432

    1260662752

    320

    4

    1260668608

    1260669600

    992

    5

    1260669952

    1260670272

    320

    6

    1260671040

    1260671456

    416

    7

    1260673184

    1260674656

    1472

    8

    1260675200

    1260682048

    6848

    9

    1260688800

    1260689472

    672

    we can observe strong peak around 40 Hz

    10

    1260752128

    1260752864

    736

    11

    1260754720

    1260755424

    704

    12

    1260757216

    1260759744

    2528

    13

    1260760480

    1260762240

    1760

    14

    1260762688

    1260771776

    9088

    15

    1260774656

    1260788224

    13568

    16

    1260790496

    1260792032

    1536

    17

    1260792672

    1260796096

    3424

    18

    1260796704

    1260809600

    12896

    19

    1260810080

    1260820480

    10400

    20

    1260820960

    1260821248

    288

    21

    1260822368

    1260823552

    1184

    22

    1260824032

    1260830496

    6464

    23

    1260830976

    1260842432

    11456

    24

    1260842912

    1260843360

    448

    25

    1260844000

    1260846080

    2080

    26

    1260848448

    1260878176

    29728

    27

    1260879616

    1260906144

    26528

    28

    1260907072

    1260914208

    7136

    29

    1260914688

    1260921152

    6464

    30

    1260921632

    1260980896

    59264

    31

    1260981376

    1261001696

    20320

    32

    1261002304

    1261008096

    5792

    33

    1261008576

    1261012320

    3744

    34

    1261012928

    1261070400

    57472

    35

    1261071616

    1261073664

    2048

    36

    1261074144

    1261077792

    3648

    37

    1261079488

    1261090080

    10592

    38

    1261090560

    1261090752

    192

    39

    1261091936

    1261093888

    1952

    40

    1261094496

    1261094880

    384

    41

    1261096448

    1261114944

    18496

    42

    1261115392

    1261117696

    2304

    43

    1261119712

    1261125024

    5312

    44

    1261125632

    1261154016

    28384

    45

    1261154464

    1261157728

    3264

    46

    1261158336

    1261158656

    320

    47

    1261159584

    1261162432

    2848

    48

    1261162880

    1261163648

    768

    49

    1261164256

    1261164480

    224

    50

    1261169184

    1261170976

    1792

    51

    1261172256

    1261180832

    8576

Offline analysis

Check point

  • Check the available locked data (done)

    • Summarize the data length (done)

  • Estimate power spectrum density
    • Summarize plots in pdf
  • Generate lock list and segment list (done)

  • Generate template bank
    • How many waveforms we need?
  • Search signals by matched filter and chi^2
  • Summary the output of search
    • histogram of SNR
    • glitch list(GPS, JST, mass, ISCO frequency, duration)

  • Summary of locked data
  • Averaged PSD
    • Power spectrum density (PSD) is averaged over 1 sec chunks by taking median.
  • Calculation time to search for signals
    • Read 500 sec data : < 1 sec

    • Estimate PSD : 2~3 min.
    • matched filter+chi^2 with single waveform (not bank) : < 1 min

  • Histogram of detection statistics
    • If data is Gaussian, <snr>=1.

  • Time series of detection statistics
    • waveform : 1.4 - 1.4 Msun
    • Beginning and ending 50 sec data were removed from the result.
    • We uploaded the 3 kinds of time series results which were maximized over rho(matched filter), chi square, rhohat(detection statistics) during 1 second window.
      • We added time series of rho and chi square, because time series of rhohat don't contain the information of the glitch.
    • File names are
      • "cbc_max_rho_ER2.txt" (this data indicates the time when data contains high power)
      • "cbc_max_chi2_ER2.txt" (this data indicates the time when data contains high power in specific frequency band)
      • "cbc_max_rhohat_ER2.txt" (this data indicates the time when data "might" contains gravitational wave signal)

Online analysis

  • Plots

KAGRA/DAWG/CBC/ER-Dec-2019 (last edited 2020-01-08 12:59:52 by HirotakaYuzurihara)