← Back to the catalog
Private

ECOSTRESS rock all axis 8a8a144c

ecostress · other

ECOSTRESS rock all axis 8a8a144c. v2.0 standardized NIRS package: 1 spectral source(s), 3 declared target(s). Auto-generated from dataset_card.json (verify before publication).

nirv2ecostress
🔒
Private dataset. Full metadata and metrics are shown, but the bytes are not redistributed here — exporting the data requires a Dataverse token. The identity card carries no spectra, only descriptive statistics.
83
samples
2,257
wavelengths
1
sources
3
targets
27
metadata
other
family

Dataset property explorer

Mean profile risk0.60
Highest axisArtefacts locaux · 1.00
Diagnostics8
Sources profiled1
ECOSTRESS rock all axis 8a8a144c property profile0.250.50.751integritynoiseartefactsbaselinePCA outliersreferencerepeatabilitystructureECOSTRESS rock all axis 8a8a144c profileintegrity: 0.00noise: 0.05artefacts: 1.00baseline: 1.00PCA outliers: 0.76reference: 1.00repeatability: 0.00structure: 0.95ECOSTRESS rock …0 center · 1 outer ring · outward = stronger anomaly / heterogeneity signal

Profile axes

Intégrité0.00
Artefacts locaux1.00
Bruit0.05
Outliers PCA0.76
Distance à la référence1.00
Répétabilité0.00
Baseline / forme1.00
Structure multi-régimes0.95
Diagnostic hypotheses00.250.50.751hypothesis scoreSplice / raccord détecteursSplice / raccord détecteurs: 0.840.84Erreur calibration / référenc…Erreur calibration / référence blanche: 0.790.79Fond différentFond différent: 0.740.74Signature VERA25-likeSignature VERA25-like: 0.660.66Erreur interpolation / réécha…Erreur interpolation / rééchantillonnage: 0.650.65Spectre hors domaine valideSpectre hors domaine valide: 0.640.64Différence de sonde / géométr…Différence de sonde / géométrie: 0.630.63Dataset multi-régimesDataset multi-régimes: 0.620.62
DiagnosticScoreForceSignauxInterprétation probable
Splice / raccord détecteursX0.84forteSpike rate 1.00, RMS/SAM référence 1.00, Jump rate 0.91Rupture aux jonctions de détecteurs, calibration locale ou sonde différente.
Erreur calibration / référence blancheX0.79forteBaseline/mean/area 1.00, RMS/SAM référence 1.00, artefacts locaux 1.00Décalage systématique entre campagnes, instruments ou référence blanche.
Fond différentX0.74forteBaseline/mean/area 1.00, RMS/SAM référence 1.00, Mahalanobis / T2 0.76Effet systématique du support, blanc/noir, transflectance ou environnement de mesure.
Signature VERA25-likeX0.66moyenneSpike rate 1.00, RMS/SAM référence 1.00, Jump rate 0.91Combinaison possible changement de sonde + splice, amplifiée par géométrie, fond ou calibration.
Erreur interpolation / rééchantillonnageX0.65moyenneSpike rate 1.00, Noise RMS faible 0.95, Jump rate 0.91Artefacts numériques ou traitement spectral incorrect.
Spectre hors domaine valideX0.64moyenneRMS/SAM référence 1.00, Structure PCA 0.95, Mahalanobis / T2 0.76Variété, espèce, lot ou condition différente mais physiquement plausible.
Différence de sonde / géométrieX0.63moyenneBaseline/mean/area 1.00, RMS/SAM référence 1.00, Mahalanobis / T2 0.76Modification de l'illumination, collecte, angle ou distance sonde-échantillon.
Dataset multi-régimesX0.62moyenneRMS/SAM référence 1.00, Structure PCA 0.95, Mahalanobis / T2 0.76Mélange de campagnes, opérateurs, lots, setups ou sous-populations spectrales.

Spectral sources

rock all

X · other · source instruments vary by sample
rock all spectra02040608005101520q05-q95 envelopeq25-q75 envelopemedian spectrummedianq25–q75q05–q95wavelength / none15.387none — median 4.114 (q25–q75 3.464–5.332)14.69none — median 4.122 (q25–q75 3.536–4.566)14.053none — median 4.232 (q25–q75 3.333–5.235)13.434none — median 4.855 (q25–q75 3.644–5.601)12.899none — median 5.301 (q25–q75 3.883–7.239)12.405none — median 5.083 (q25–q75 3.751–6.069)11.948none — median 5.126 (q25–q75 4.467–6.012)11.498none — median 6.798 (q25–q75 5.541–7.762)11.104none — median 7.842 (q25–q75 6.627–9.465)10.736none — median 8.75 (q25–q75 6.525–10.58)10.392none — median 10.88 (q25–q75 7.436–13.68)10.049none — median 14.44 (q25–q75 8.71–19.17)9.7471none — median 16.66 (q25–q75 9.354–21.57)9.4625none — median 18.32 (q25–q75 9.907–24.74)9.1941none — median 15.65 (q25–q75 9.155–28.48)8.9405none — median 15.5 (q25–q75 8.761–25.28)8.6859none — median 14.96 (q25–q75 8.117–21.73)8.4592none — median 12.78 (q25–q75 7.698–22.51)8.244none — median 11.4 (q25–q75 7.175–20.63)8.0395none — median 7.926 (q25–q75 3.669–9.672)7.833none — median 3.537 (q25–q75 2.136–6.135)7.6482none — median 2.432 (q25–q75 1.627–5.159)7.4718none — median 2.216 (q25–q75 1.351–4.976)7.3035none — median 2.345 (q25–q75 1.728–5.08)7.1327none — median 2.609 (q25–q75 1.713–4.999)6.9791none — median 2.753 (q25–q75 2.018–5.464)6.832none — median 2.81 (q25–q75 2.174–5.987)6.6909none — median 3.368 (q25–q75 2.312–6.497)6.5556none — median 3.527 (q25–q75 2.478–6.743)6.4177none — median 3.458 (q25–q75 2.771–6.441)6.293none — median 3.079 (q25–q75 2.463–4.168)6.1732none — median 2.731 (q25–q75 2.247–3.414)6.0578none — median 2.715 (q25–q75 2.199–3.313)5.9398none — median 2.826 (q25–q75 2.284–3.355)5.8329none — median 3.087 (q25–q75 2.44–3.606)5.7298none — median 3.37 (q25–q75 2.678–3.915)5.6303none — median 3.421 (q25–q75 2.744–4.068)5.5282none — median 3.585 (q25–q75 2.822–4.209)5.4355none — median 3.986 (q25–q75 3.201–4.523)5.3458none — median 4.198 (q25–q75 3.358–4.815)5.2591none — median 4.561 (q25–q75 3.694–5.633)5.1751none — median 4.931 (q25–q75 3.973–6.385)5.0888none — median 5.179 (q25–q75 4.262–6.312)5.0101none — median 5.314 (q25–q75 4.4–6.779)4.9338none — median 5.657 (q25–q75 4.804–7.616)4.8599none — median 6.452 (q25–q75 5.437–8.426)4.7836none — median 6.975 (q25–q75 6.015–9.282)4.7141none — median 6.966 (q25–q75 6.206–9.589)4.6465none — median 7.251 (q25–q75 6.296–9.51)4.5808none — median 7.962 (q25–q75 6.897–11)4.513none — median 8.259 (q25–q75 7.181–10.32)4.451none — median 8.721 (q25–q75 7.315–10.87)4.3907none — median 9.823 (q25–q75 8.103–12.22)4.332none — median 10.8 (q25–q75 8.249–13.47)4.2749none — median 11.1 (q25–q75 8.286–14.18)4.2158none — median 11.46 (q25–q75 8.943–15.75)4.1617none — median 11.98 (q25–q75 8.967–16.11)4.1089none — median 12.07 (q25–q75 8.72–16.82)4.0575none — median 12.21 (q25–q75 8.239–16.76)4.0042none — median 11.14 (q25–q75 7.05–16.45)3.9554none — median 10.98 (q25–q75 6.687–16.77)3.9077none — median 11.77 (q25–q75 7.274–17.52)3.8611none — median 11.93 (q25–q75 7.587–17.25)3.8128none — median 12.86 (q25–q75 7.804–18.44)3.7685none — median 12.75 (q25–q75 9.194–19.47)3.7252none — median 13.14 (q25–q75 9.924–19.36)3.6829none — median 13.44 (q25–q75 9.926–19.85)3.6415none — median 14.02 (q25–q75 9.905–19.92)3.5985none — median 12.97 (q25–q75 9.385–18.72)3.559none — median 12.1 (q25–q75 8.723–17.88)3.5203none — median 10.93 (q25–q75 7.875–16.19)3.4825none — median 9.874 (q25–q75 6.584–14.72)3.4432none — median 10.24 (q25–q75 7.006–14.42)3.407none — median 9.727 (q25–q75 6.657–13.11)3.3716none — median 9.503 (q25–q75 6.807–12.94)3.3369none — median 9.94 (q25–q75 6.685–13.21)3.3028none — median 9.209 (q25–q75 7.188–12.57)3.2675none — median 9.314 (q25–q75 7.426–12.19)3.2348none — median 8.992 (q25–q75 7.352–11.9)3.2029none — median 8.49 (q25–q75 7.198–11.48)3.1715none — median 8.045 (q25–q75 6.77–11.09)3.1389none — median 7.537 (q25–q75 6.397–10.11)3.1088none — median 7.383 (q25–q75 6.082–9.463)3.0793none — median 6.991 (q25–q75 6.016–9.403)3.0503none — median 6.759 (q25–q75 5.749–9.488)3.0201none — median 6.759 (q25–q75 5.748–9.331)2.9922none — median 6.482 (q25–q75 5.572–9.159)2.9648none — median 6.302 (q25–q75 5.526–8.815)2.9379none — median 6.518 (q25–q75 5.524–9.122)2.9116none — median 6.484 (q25–q75 5.497–8.828)2.884none — median 6.752 (q25–q75 5.595–9.322)2.8586none — median 6.772 (q25–q75 5.73–9.377)2.8336none — median 6.954 (q25–q75 5.768–9.8)2.809none — median 7.045 (q25–q75 5.751–9.827)2.7834none — median 6.712 (q25–q75 5.64–10.13)2.7597none — median 6.5 (q25–q75 5.24–9.156)2.7364none — median 7.526 (q25–q75 5.746–11.51)2.7135none — median 11.26 (q25–q75 7.046–16.06)2.6896none — median 16.32 (q25–q75 11.26–22.96)2.6674none — median 19.17 (q25–q75 13.6–26.65)2.6456none — median 19.26 (q25–q75 13.67–27.79)2.6242none — median 19.81 (q25–q75 13.99–29.02)2.6031none — median 20.1 (q25–q75 13.58–29.98)2.5811none — median 19.71 (q25–q75 14.48–29.37)2.5607none — median 19.67 (q25–q75 14.29–29)2.5406none — median 18.84 (q25–q75 12.13–28.78)2.5209none — median 18.94 (q25–q75 13.24–29.21)2.5002none — median 18.85 (q25–q75 13.21–28.94)2.4811none — median 19.07 (q25–q75 14.55–29.62)2.4622none — median 19.45 (q25–q75 14.52–29.83)2.4437none — median 20.6 (q25–q75 15.05–30.92)2.4242none — median 21.26 (q25–q75 14.59–32.52)2.4063none — median 20.94 (q25–q75 14.76–33.6)2.3885none — median 21.58 (q25–q75 15.04–32.79)2.371none — median 21.12 (q25–q75 15.3–32.7)2.3538none — median 19.58 (q25–q75 15.35–32.95)2.3358none — median 19.66 (q25–q75 14.84–33.13)2.3191none — median 19.74 (q25–q75 14.04–33.92)2.3026none — median 20.96 (q25–q75 15.03–35.34)2.2864none — median 21.85 (q25–q75 15.37–36.39)2.2694none — median 22.17 (q25–q75 15.83–35.89)2.2536none — median 22.7 (q25–q75 15.28–37.76)2.238none — median 23.09 (q25–q75 15.98–39.3)2.2227none — median 22.63 (q25–q75 15.77–37.79)2.2066none — median 22.99 (q25–q75 15.85–36.63)2.1917none — median 23.33 (q25–q75 16.41–38.8)2.1769none — median 24.3 (q25–q75 16.51–38.31)2.1624none — median 24.38 (q25–q75 16.25–38.5)2.1481none — median 24.51 (q25–q75 16.22–39.41)2.1331none — median 25.43 (q25–q75 16.19–39.95)2.1191none — median 25.11 (q25–q75 17.33–39.24)2.1054none — median 24.8 (q25–q75 17.34–40.68)2.0918none — median 25.05 (q25–q75 16.49–40.48)2.0775none — median 24.72 (q25–q75 17.1–39.63)2.0643none — median 25.36 (q25–q75 17.68–40.84)2.0512none — median 25.03 (q25–q75 17.83–39.1)2.0383none — median 24.82 (q25–q75 17.35–39.75)2.0248none — median 25.79 (q25–q75 17.27–39.99)2.0122none — median 25.04 (q25–q75 16.57–38.96)1.9998none — median 25.28 (q25–q75 16.84–38.43)

Sampling

Wavelengths2,257
Axis range2–15.39 none
Mean spacing0.00593 none
Gridirregular
Observations83

Signal & quality

Value range0 – 80.8
Mean range2.82 – 30.3
Mean level14.51
Area125.5
PTP27.47
Noise RMS0.068578
SNR2.1e+02
SNR dB5e+01 dB
Dynamic range27.5
Smoothness0.4365
Saturated0.0%
X-outliers35

Integrity & artefacts

NaN ratio0.00%
Inf count0
Zero ratio0.00%
Spike count2,389
Spike rate1.28%
Jump count1,701
Jump rate0.91%
Clip fraction0.00%

Shape & reference

Baseline slope-21.348
Curvature RMS0.38507
D1 RMS0.33942
RMS to mean7.6945
RMS p9518.895
SAM to mean0.26448
SAM p950.50148
Affine offset p958.2471
Affine gain p95 Δ1.2736
Affine residual p959.7421
Xcorr lag p9523

Outliers & repeatability

PCA Q p95/median5.3
Hotelling T2 p95/median6.1
Mahalanobis H p95/median2.5
Repeat groups0

Dimensionality (PCA)

Effective rank2.6
PCs → 95% var4
PCs → 99% var11
Top-10 cum. var98.9%
Computed metric scores 29worst 1.00
FamilleMétrique calculéeValeurScoreNiveauInterprétation datasetCauses typiquesCalcul / scoring
Intégrité des donnéesNaN ratiointegrity.nan_ratio0%0.00faibleSpectre completErreur acquisition/exportcount(isnan(X)) / X.sizealert = min(1, nan_ratio / 0.05)
Intégrité des donnéesInf countintegrity.inf_count00.00faibleNormalCalculs invalidescount(isinf(X))alert = min(1, inf_count / 1)
Intégrité des donnéesZero ratiointegrity.zero_ratio0.00214%0.00faibleNormalExport, saturationcount(X == 0) / count(finite X)alert = min(1, zero_ratio / 0.05)
Amplitude globaleMean reflectanceamplitude.mean_reflectance14.5141.00fortValeur atypique: Trop clair / fond visible ou Trop sombreFond, géométriemean(X finite)alert reuses baseline/shape drift because absolute reflectance ranges are technology-dependent
Amplitude globaleArea under curveamplitude.area_under_curve125.481.00fortValeur atypique: Différence d'éclairement ou NormalDistance sondetrapezoid(mean_spectrum, spectral_axis)alert reuses baseline/shape drift because area scale depends on axis and units
Amplitude globalePeak-to-peak (PTP)amplitude.peak_to_peak27.4650.00faibleVariabilité forteSaturationmax(mean_spectrum) - min(mean_spectrum)alert increases when dynamic range is abnormally flat
Amplitude globaleVarianceamplitude.variance169.850.00faibleNormal ou hétérogèneMauvais contactvar(X finite)alert increases when variance/dynamic range is abnormally flat
BruitNoise RMSnoise.noise_rms0.0685780.05faibleStableLampe, détecteurmedian MAD(second derivative) * 1.4826 / sqrt(6)alert = noise_rms / signal_scale, saturated at 5%
BruitSNRnoise.snr211.640.00faibleBon signalAcquisitionmean(abs(X)) / noise_rmsalert decreases with SNR dB; >=40 dB is treated as low alert
BruitBandwise SNRnoise.bandwise_snr_min28.4390.17faibleZone fiableDétecteurmin(abs(mean_spectrum) / local second-derivative noise)alert decreases with worst-band SNR dB; >=35 dB is treated as low alert
Artefacts locauxSpike countartefacts.spike_count2,3891.00fortArtefactsCosmic rays, splicecount robust outliers in second derivativealert follows spike_rate, saturated at 1%
Artefacts locauxSpike rateartefacts.spike_rate1.28%1.00fortSpectre suspectInterpolationspike_count / (n_samples * (n_features - 2))alert = min(1, spike_rate / 0.01)
Artefacts locauxJump countartefacts.jump_count1,7010.91fortRaccord détecteurSplicecount robust outliers in first derivativealert follows jump_rate, saturated at 1%
Artefacts locauxJump rateartefacts.jump_rate0.908%0.91fortProblème spectralCalibrationjump_count / (n_samples * (n_features - 1))alert = min(1, jump_rate / 0.01)
Artefacts locauxClip fractionartefacts.clip_fraction0.00267%0.00faibleNormalDétecteur saturéfraction of finite cells equal to repeated min/max extremaalert = min(1, clip_fraction / 0.01)
Forme spectraleBaseline slopeshape.baseline_slope-21.3481.00fortDériveÉclairementlinear slope of mean_spectrum over normalized axisalert = abs(slope / signal_scale), saturated at 0.5
Forme spectraleCurvature RMSshape.curvature_rms0.385071.00fortForme inhabituelleFond, splicemedian RMS(second derivative per spectrum)alert = curvature_rms / signal_scale, saturated at 1%
Forme spectraleD1 RMSshape.d1_rms0.339420.25faiblePlatBiologie ou artefactmedian RMS(first derivative per spectrum)alert = d1_rms / signal_scale, saturated at 5%
Outliers multivariésPCA Q (SPE)outliers.pca_q_ratio5.25530.66moyenSpectre atypiqueArtefact, mélangep95(Q/SPE residual) / median(Q/SPE residual)alert = min(1, pca_q_ratio / 8)
Outliers multivariésHotelling T²outliers.hotelling_t2_ratio6.1090.76fortExtrême mais cohérentVariabilité naturellep95(Hotelling T2) / median(Hotelling T2)alert = min(1, hotelling_t2_ratio / 8)
Outliers multivariésMahalanobis Houtliers.mahalanobis_h_ratio2.47160.62moyenOutlier globalDomaine différentp95(sqrt(T2)) / median(sqrt(T2))alert = min(1, mahalanobis_h_ratio / 4)
Comparaison à référenceRMS to mean spectrumreference.rms_to_mean_spectrum_p9518.8951.00fortSpectre différentDomain shiftp95 RMS distance to dataset mean spectrumalert = RMS_p95 / signal_scale, saturated at 25%
Comparaison à référenceSpectral Angle Mapper (SAM)reference.sam_to_mean_spectrum_p950.501481.00fortForme différenteFond, géométriep95 spectral angle to dataset mean spectrumalert = min(1, SAM_p95 / 0.35 rad)
RépétabilitéRMS intra-IDrepeatability.rms_intra_id0.00faibleStablePositionnementmedian RMS distance to repeated-sample centroidalert = RMS_intra_ID / signal_scale, saturated at 10%
RépétabilitéSAM intra-IDrepeatability.sam_intra_id0.00faibleStableAcquisitionmedian SAM to repeated-sample centroidalert = min(1, SAM_intra_ID / 0.15 rad)
RépétabilitéCV intra-IDrepeatability.cv_intra_id0.00faibleStableOpérateurmedian within-ID band CValert = min(1, CV_intra_ID / 0.25)
Structure du datasetPCA score densitystructure.pca_score_density0.00726710.95fortSous-populationsLots différents1 / median kNN distance in PCA score spacealert follows density_cv/profile structure complexity, not raw density alone
Structure du datasetLocal Outlier Factor (LOF)structure.local_outlier_factor_p952.85010.93fortSpectre isoléCas raresp95 approximate LOF from PCA-score kNN distancesalert = min(1, max(0, LOF_p95 - 1) / 2)
Structure du datasetIsolation Forest scorestructure.isolation_forest_score_p950.584490.95fortSpectre atypiqueDiverses causesp95 IsolationForest anomaly score on PCA scoresalert follows structure complexity; raw score is implementation-dependent
X PCA score plot-1,500-1,000-50005001,000-400-2000200400600PC1 -691.9 · PC2 -224.5PC1 190.7 · PC2 -57.29PC1 -143.1 · PC2 -40.95PC1 253.1 · PC2 -26.58PC1 553.3 · PC2 -1.043PC1 255.2 · PC2 -9.828PC1 600.3 · PC2 -112.3PC1 -443.6 · PC2 65.97PC1 76.59 · PC2 -155.6PC1 -763.4 · PC2 -234.3PC1 467 · PC2 -135.5PC1 -178.5 · PC2 -111.6PC1 -187.7 · PC2 -106.2PC1 -295.5 · PC2 -113.3PC1 -343.4 · PC2 -65.95PC1 -933.6 · PC2 -23.29PC1 -130.7 · PC2 -94.14PC1 -481.8 · PC2 -224.5PC1 100.2 · PC2 -54.07PC1 31.11 · PC2 -48.21PC1 141.4 · PC2 -104.7PC1 265.5 · PC2 -33.04PC1 35.14 · PC2 -5.774PC1 129.4 · PC2 -30.67PC1 133.2 · PC2 -35.59PC1 407.1 · PC2 -35.18PC1 607.8 · PC2 0.394PC1 410 · PC2 -29.45PC1 169.1 · PC2 1.475PC1 187 · PC2 -9.667PC1 424.5 · PC2 -9.871PC1 490.9 · PC2 -53.03PC1 286.7 · PC2 -45.32PC1 359 · PC2 2.463PC1 326.5 · PC2 -36.78PC1 -58.32 · PC2 112.5PC1 429.4 · PC2 66.03PC1 394.8 · PC2 47.16PC1 -437.9 · PC2 -136.1PC1 389.1 · PC2 -98.02PC1 -400.2 · PC2 -81.76PC1 -266.9 · PC2 449.4PC1 86.27 · PC2 298.9PC1 -42.4 · PC2 397PC1 421.2 · PC2 -24.13PC1 67.09 · PC2 -13.35PC1 250 · PC2 -194.7PC1 -257.4 · PC2 -162.9PC1 92.83 · PC2 -123.2PC1 331.3 · PC2 -14.08PC1 176.6 · PC2 -98.06PC1 -963.9 · PC2 -227.1PC1 392.8 · PC2 15.17PC1 142.9 · PC2 -107.1PC1 142.9 · PC2 -107.1PC1 -60.48 · PC2 277.8PC1 446.7 · PC2 -46.76PC1 352.7 · PC2 2.211PC1 -203.7 · PC2 -123.4PC1 -733.1 · PC2 -57PC1 69.79 · PC2 236.2PC1 -381.2 · PC2 362.4PC1 -548.6 · PC2 145.4PC1 180.5 · PC2 261.2PC1 212 · PC2 154.1PC1 221.6 · PC2 229PC1 194 · PC2 220.9PC1 -917 · PC2 350.2PC1 -538.9 · PC2 211.7PC1 89.61 · PC2 278.1PC1 -814.9 · PC2 -181.8PC1 -578.5 · PC2 -179.5PC1 157.5 · PC2 -104PC1 182.7 · PC2 -82.74PC1 -123.9 · PC2 -100.7PC1 -92.85 · PC2 -40.82PC1 48.93 · PC2 159.3PC1 473.2 · PC2 -46.34PC1 444.9 · PC2 -41.41PC1 350.8 · PC2 -30.44PC1 94.51 · PC2 162.1PC1 -1160 · PC2 147.2PC1 -563.6 · PC2 36.56PC1 (76.3%)PC2 (10.4%)83 scores
PCA explained variance0%25%50%75%100%PC1: 76.3% (cumulative 76.3%)1PC2: 10.4% (cumulative 86.7%)2PC3: 5.5% (cumulative 92.2%)3PC4: 2.9% (cumulative 95.1%)4PC5: 1.2% (cumulative 96.3%)5PC6: 1.0% (cumulative 97.3%)6PC7: 0.7% (cumulative 98.0%)7PC8: 0.5% (cumulative 98.5%)8PC9: 0.2% (cumulative 98.7%)9PC10: 0.2% (cumulative 98.9%)10cumulative explained variancePC variancecumulativeprincipal component · cumulative (dashed)

Metric interpretation reference

Metric catalog 29
FamilleMétriqueCe qu’elle détecteForte valeur =Faible valeur =Causes typiquesCalcul / score
Intégrité des donnéesNaN ratioDonnées manquantesSpectre corrompuSpectre completErreur acquisition/exportcount(isnan(X)) / X.sizealert = min(1, nan_ratio / 0.05)
Intégrité des donnéesInf countValeurs infiniesCorruptionNormalCalculs invalidescount(isinf(X))alert = min(1, inf_count / 1)
Intégrité des donnéesZero ratioColonnes ou cellules nullesSpectre tronquéNormalExport, saturationcount(X == 0) / count(finite X)alert = min(1, zero_ratio / 0.05)
Amplitude globaleMean reflectanceNiveau moyenTrop clair / fond visibleTrop sombreFond, géométriemean(X finite)alert reuses baseline/shape drift because absolute reflectance ranges are technology-dependent
Amplitude globaleArea under curveIntensité globaleDifférence d'éclairementNormalDistance sondetrapezoid(mean_spectrum, spectral_axis)alert reuses baseline/shape drift because area scale depends on axis and units
Amplitude globalePeak-to-peak (PTP)DynamiqueVariabilité forteSpectre platSaturationmax(mean_spectrum) - min(mean_spectrum)alert increases when dynamic range is abnormally flat
Amplitude globaleVarianceVariabilité spectraleNormal ou hétérogèneSpectre platMauvais contactvar(X finite)alert increases when variance/dynamic range is abnormally flat
BruitNoise RMSBruit haute fréquenceBruitéStableLampe, détecteurmedian MAD(second derivative) * 1.4826 / sqrt(6)alert = noise_rms / signal_scale, saturated at 5%
BruitSNRQualité signalBon signalMauvais signalAcquisitionmean(abs(X)) / noise_rmsalert decreases with SNR dB; >=40 dB is treated as low alert
BruitBandwise SNRBruit localiséZone fiableZone problématiqueDétecteurmin(abs(mean_spectrum) / local second-derivative noise)alert decreases with worst-band SNR dB; >=35 dB is treated as low alert
Artefacts locauxSpike countPics étroitsArtefactsSpectre propreCosmic rays, splicecount robust outliers in second derivativealert follows spike_rate, saturated at 1%
Artefacts locauxSpike rateDensité de picsSpectre suspectNormalInterpolationspike_count / (n_samples * (n_features - 2))alert = min(1, spike_rate / 0.01)
Artefacts locauxJump countDiscontinuitésRaccord détecteurContinuSplicecount robust outliers in first derivativealert follows jump_rate, saturated at 1%
Artefacts locauxJump rateFréquence de sautsProblème spectralNormalCalibrationjump_count / (n_samples * (n_features - 1))alert = min(1, jump_rate / 0.01)
Artefacts locauxClip fractionSaturationClippingNormalDétecteur saturéfraction of finite cells equal to repeated min/max extremaalert = min(1, clip_fraction / 0.01)
Forme spectraleBaseline slopePente globaleDériveStableÉclairementlinear slope of mean_spectrum over normalized axisalert = abs(slope / signal_scale), saturated at 0.5
Forme spectraleCurvature RMSCourbureForme inhabituelleLisseFond, splicemedian RMS(second derivative per spectrum)alert = curvature_rms / signal_scale, saturated at 1%
Forme spectraleD1 RMSVariabilité localeSpectre structuréPlatBiologie ou artefactmedian RMS(first derivative per spectrum)alert = d1_rms / signal_scale, saturated at 5%
Outliers multivariésPCA Q (SPE)Non expliqué par PCASpectre atypiqueConformeArtefact, mélangep95(Q/SPE residual) / median(Q/SPE residual)alert = min(1, pca_q_ratio / 8)
Outliers multivariésHotelling T²Extrême dans PCAExtrême mais cohérentCentralVariabilité naturellep95(Hotelling T2) / median(Hotelling T2)alert = min(1, hotelling_t2_ratio / 8)
Outliers multivariésMahalanobis HDistance au nuageOutlier globalPopulation normaleDomaine différentp95(sqrt(T2)) / median(sqrt(T2))alert = min(1, mahalanobis_h_ratio / 4)
Comparaison à référenceRMS to mean spectrumDistance moyenneSpectre différentTypiqueDomain shiftp95 RMS distance to dataset mean spectrumalert = RMS_p95 / signal_scale, saturated at 25%
Comparaison à référenceSpectral Angle Mapper (SAM)Différence de formeForme différenteSimilaireFond, géométriep95 spectral angle to dataset mean spectrumalert = min(1, SAM_p95 / 0.35 rad)
RépétabilitéRMS intra-IDReproductibilitéMauvaise répétabilitéStablePositionnementmedian RMS distance to repeated-sample centroidalert = RMS_intra_ID / signal_scale, saturated at 10%
RépétabilitéSAM intra-IDVariation de formeInstableStableAcquisitionmedian SAM to repeated-sample centroidalert = min(1, SAM_intra_ID / 0.15 rad)
RépétabilitéCV intra-IDVariabilité interneMauvais contrôleStableOpérateurmedian within-ID band CValert = min(1, CV_intra_ID / 0.25)
Structure du datasetPCA score densityClustersSous-populationsHomogèneLots différents1 / median kNN distance in PCA score spacealert follows density_cv/profile structure complexity, not raw density alone
Structure du datasetLocal Outlier Factor (LOF)Anomalie localeSpectre isoléPopulation normaleCas raresp95 approximate LOF from PCA-score kNN distancesalert = min(1, max(0, LOF_p95 - 1) / 2)
Structure du datasetIsolation Forest scoreAnomalie globaleSpectre atypiqueNormalDiverses causesp95 IsolationForest anomaly score on PCA scoresalert follows structure complexity; raw score is implementation-dependent
Technology-specific extensions
TechnologieAdaptations / métriquesAnomalies cibléesCommentaire pratique
UV-Vis 300-1000 nmBaseline, pente globale, dérive aux bords 300-350 et 900-1000; métriques par zonesLumière parasite, mauvais blanc, saturation, faible signal aux extrémitésLes bords sont souvent instables; calculer aussi des scores edge/middle.
UV-Vis 300-1000 nmSaturation / clipping proche absorbance max ou réflectance maxSignal écrêtéTrès important si absorption forte.
UV-Vis 300-1000 nmRed-edge, position de maximum, ratios de bandes si végétalDécalage biologique ou artefact optiqueAide à distinguer changement réel et problème d'acquisition.
UV-Vis 300-1000 nmSmoothness / roughness indexBruit haute fréquenceSouvent plus informatif que le SNR seul.
MIR / ATR-FTIRATR contact quality index: intensité globale, aire totale, profondeur des bandes clésMauvais contact cristal-échantillonCrucial: beaucoup d'anomalies viennent du contact ATR.
MIR / ATR-FTIRCO2 / H2O atmospheric bandsMauvaise correction atmosphériquePics parasites fréquents.
MIR / ATR-FTIRBaseline curvature / rubber-band residualDiffusion, contact, dérive baselineTrès utile avant PCA.
MIR / ATR-FTIRPeak position shiftMauvais alignement spectral / calibrationImportant en FTIR car de petits shifts comptent.
MIR / ATR-FTIRBand area ratios sur bandes connuesSpectre chimiquement incohérentÀ adapter par matrice: polysaccharides, protéines, lipides, etc.
HS-MSTotal Ion Current (TIC), Base Peak Intensity (BPI)Injection faible, ionisation instableÉquivalent MS du niveau global spectral.
HS-MSNombre de pics détectésSpectre pauvre ou trop bruitéTrop peu = mauvais signal; trop = bruit/contamination.
HS-MSMass accuracy / m/z driftProblème calibration masseFondamental en HRMS.
HS-MSRetention time drift si LC/GC-MSDérive chromatographiqueÀ suivre sur standards/QC pools.
HS-MSBlank contamination scoreContaminants / carry-overComparer échantillons vs blancs.
HS-MSInternal standard CVVariabilité instrumentaleTrès robuste si standards disponibles.
HS-MSMissingness par featureInstabilité de détectionCrucial pour filtrer les variables.
Avec répétitionsRMS intra-échantillonRépétabilité globaleApplicable à toutes les technologies.
Avec répétitionsSAM / corrélation intra-échantillonRépétabilité de formeTrès utile pour spectres.
Avec répétitionsCV intra-échantillon par bande / featureRépétabilité localeDétecte les zones instables.
Avec répétitionsICC ou variance componentsPart variance échantillon vs techniqueTrès utile si plusieurs répétitions par sample.
Avec répétitionsDistance au centroïde intra-IDRépétition aberrantePermet de flagger la mauvaise répétition plutôt que le sample entier.
Bug-hunting / supervised audits
Famille de bug potentielMéthodes à ajouterCe que ça détecteÉtat dans l’explorateur
Shift spectral globalCorrélation spectre moyen inter-dataset, DTW, cross-correlation, comparaison positions de picsDécalage en longueur d'onde, mauvais alignement, interpolation différentePartiellement calculé: cross-correlation lag et dispersion des positions de pics vs spectre moyen.
Baseline / offset / gainRégression chaque spectre vs spectre moyen: x = a + b ref + residual; suivi de a, b, RMS résiduelOffset additif, effet multiplicatif, dérive de baselineCalculé dans reference.affine_*.
Mélange de lignes / mauvais appariement X-M-YVérification index, hash des lignes, duplication ID, distance spectrale intra-ID, labels incohérentsLignes mélangées, metadata mal alignées, Y attribué au mauvais spectrePartiellement couvert par répétabilité intra-ID; checks index/hash à ajouter au pipeline canonical.
Fuite d'information / répétitions mal splitéesGroupKFold par sample_id vs StratifiedKFold random; audit des partitions par sample_idPerformance artificiellement bonne due aux répétitionsNécessite splits et benchmark modèle; non calculé par la carte descriptive.
Label bugsÉchantillons proches en X mais Y différents, confident learning, erreurs systématiques FP/FNY inversés, erreurs de saisie, classes ambiguësNécessite Y et/ou modèle; recommandé pour l'explorateur supervisé.
Sous-domaines cachésPCA/UMAP/t-SNE + clustering non supervisé + association avec dataset/Y/date/operatorLots, campagnes, sondes, backgrounds non renseignésPartiellement calculé par structure PCA/LOF; UMAP/t-SNE hors carte statique.
Artefacts localisés inconnusCarte wavelength x dataset: différence moyenne, différence variance, KS par longueur d'ondeRégions spectrales anormales non anticipéesÀ calculer au niveau banque quand plusieurs datasets partagent un axe spectral.
Ruptures instrumentalesDiscontinuités dans dérivées, changepoint detectionSplice, raccord détecteur, saut local non prévuCalculé par jump/spike rates; changepoint plus avancé à ajouter.
Mélange / contamination spectraleNMF / unmixing / reconstruction par convex hullComposante externe: fond, plastique, solNon calculé automatiquement; nécessite hypothèses de composants ou grande bibliothèque.
Features instables mais prédictivesImportance modèle vs instabilité QC par variableModèle qui apprend un artefact plutôt qu'un signal biologiqueNécessite modèle supervisé; recommandé pour rapports de benchmark.

Variables

Targets 3

material_name

target · categorical
material_name classesQuartziteQuartzite: 22Quartz ConglomerateQuartz Conglomerate: 22TrachyteTrachyte: 11SyeniteSyenite: 11Hornblende SyeniteHornblende Syenite: 11Nepheline-Sodalite SyeniteNepheline-Sodalite Syenite: 11ScoriaScoria: 11Amygdaloidal BasaltAmygdaloidal Basalt: 11ObsidianObsidian: 11TuffTuff: 11+10 more+10 more: 1010
n / missing83 / 0
Classes81
Balance (entropy)1
Imbalance ratio2
Top classQuartzite (2)

class_label

target · categorical
class_label classesIgneousIgneous: 3838SedimentarySedimentary: 2828MetamorphicMetamorphic: 1717
n / missing83 / 0
Classes3
Balance (entropy)0.95
Imbalance ratio2
Top classIgneous (38)

subclass

target · categorical
subclass classesFelsicFelsic: 1111MaficMafic: 99LimestoneLimestone: 99IntermediateIntermediate: 77SandstoneSandstone: 77AlkalicAlkalic: 44UltramaficUltramafic: 44MarbleMarble: 44SchistSchist: 44ShaleShale: 44+10 more+10 more: 1919
n / missing83 / 0
Classes21
Balance (entropy)0.92
Imbalance ratio11
Top classFelsic (11)

Metadata 3

ecostress_resource_id

metadata · categorical
n / missing83 / 0
Classes83
Balance (entropy)1
Imbalance ratio1
Top classrock.igneous.alkalic.solid.all.ward17.jpl.nicolet.spectrum (1)

location

metadata · categorical
location classesWard's Collection of American…Ward's Collection of American Rocks. Sample locality - Portland, Middlesex County, Connecticut.: 22Ward's Collection of American…Ward's Collection of American Rocks. Sample locality - Mineral Hill, near Cripple Creek, Teller County, Colorado.: 11Ward's Collection of American…Ward's Collection of American Rocks. Sample locality - Golden Cycle Mine, near Victor, Teller County, Colorado.: 11Ward's Collection of American…Ward's Collection of American Rocks. Sample locality - Near Cuttingsville, Ruthland County, Vermont.: 11Ward's Collection of American…Ward's Collection of American Rocks. Sample locality - Near Red Hill, Carroll County, New Hampshire.: 11Ward's Collection of American…Ward's Collection of American Rocks. Sample locality - Klamath Falls, Klamath County, Oregon.: 11Ward's Collection of American…Ward's Collection of American Rocks. Sample locality - Mohawk Mine, Ahmeek, Keweenaw County, Michigan.: 11Ward's Collection of American…Ward's Collection of American Rocks. Sample locality - Lake County, Oregon.: 11Ward's Collection of American…Ward's Collection of American Rocks. Sample locality - Cripple Creek, Teller county, Colorado.: 11Ward's Collection of American…Ward's Collection of American Rocks. Sample locality - Mattapan, Suffolk County, Massachusetts.: 11+10 more+10 more: 1010
n / missing83 / 0
Classes82
Balance (entropy)1
Imbalance ratio2
Top classWard's Collection of American Rocks. Sample locality - Portland, Middlesex County, Connecticut. (2)

sample_description

metadata · categorical
n / missing83 / 0
Classes83
Balance (entropy)1
Imbalance ratio1
Top classA very fine-grained, porphyritic rock, light gray in color.Geologic age - Tertiary (Post-Oligocene).Collected by: Ward's Natural Science Original ASTER Spectral Library name was jpl.nicolet.rock.igneous.alkalic.solid.ward17.spectrum.txt (1)
Constant metadata 15
  • categoryrock
  • material_typeRock
  • instrumentjpl.nicolet
  • acquisition_modeHemispherical reflectance
  • signal_typeReflectance (percent)
  • axis_unitWavelength (micrometers)
  • axis_min2
  • axis_max15.39
  • n_points_original2,257
  • publication_doi10.1016/j.rse.2019.05.015
  • citationMeerdink et al. 2019, Baldridge et al. 2009
  • licenseCopyright California Institute of Technology / JPL, all rights reserved
  • rights_statusmanual_review_needed
  • usage_scopeprivate_use_only
  • notesnone

9 variable(s) omitted (no recorded values).

Alignment

Alignment levelobservation
Sample id availableyes
Samples83
Observations (total)83
Reps per samplemin 1 · mean 1 · max 1

Provenance & citation

ContributorECOSTRESS Spectral Library
Origin · url [open]https://speclib.jpl.nasa.gov/download
Origin · url [open]https://speclib.jpl.nasa.gov/
Origin · script [manual]source_to_standard.py — standardization script (maintainer-only)
Publication10.1016/j.rse.2019.05.015 — The ECOSTRESS spectral library version 1.0
Publication10.1016/j.rse.2008.11.007 — The ASTER Spectral Library Version 2.0

Governance & integrity

Tierprivate
LicenseLicenseRef-not-cleared
Permitted useResearch and benchmarking; private use only.
Access policyManual download / private-use-only per source.
RedistributionOfficial ECOSTRESS page requests citation and states copyright/all rights reserved; converted matrices are private/internal until redistribution rights are clarified.
Content version1.0.0
Schema / protocol2.0
Content hash8e2305ca0c3b1186…
Processing hash07c9ef671c50aba8…
Metadata hash26d307a46c3d0573…

Load this dataset

# pip install nirs4all-datasets
from nirs4all_datasets import get

# private dataset — export requires a Dataverse token
ds = get("ecostress_rock_all_2257points", token="…")
X, y = ds.x(), ds.y()
print(X.shape, y.shape)

Metadata downloads are available for public datasets only. The dataset bytes are never served here — fetch them from the origin / DOI above.