Brian noticed BE12599's 2026-08-09 event reports no ZC frequency because the trace never crosses zero. That is the best detector in this investigation. A geophone has no DC response, so its output must integrate to ~zero over a record. |mean|/peak is therefore ~0 for real motion and ~1 for anything electrical. Across 12,068 channel-events with peak >= 0.05 in/s the statistic is bimodal with a 1.09% dead zone, and at mp >= 0.8 it returns exactly the five confirmed units -- from physics rather than a tuned threshold. Two detectors on different principles agreeing is the strongest corroboration the list has had. It also settles BE11007 as NOT an offset: mp 0.75-0.89 but frac_neg 0.99 at peaks of 7.4-9.4 in/s, i.e. a one-sided near-full-scale blast. Journal 8e diagnoses BE12599 specifically. Its August waveforms are unipolar impulses with an RC tail (26 ms -> 118 ms -> never recovers over 14 days), and the fault MOVES between Long and Tran while the sensor self-check passes on every event. A failing element cannot hop channels; a connector can -- which also explains why the swing test never fails and why an autozero rarely helps. Corrects 8c's claim that the spread gate is blind to onsets: of 87 BE18438|Vert events it rejected one, the transitional record. Narrower than stated. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01HgTe8CamXAHcAmaQ6QNcog
92 lines
3.8 KiB
Python
92 lines
3.8 KiB
Python
#!/usr/bin/env python3
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"""Detect NON-MOTION on a geophone channel: |mean| / peak.
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A geophone is a velocity sensor with no DC response, so its output over a
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record must integrate to ~zero — the ground does not relocate. Real motion
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therefore sits roughly half above and half below zero. Anything electrical —
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a charge-injection spike, a step, a parked pedestal — is one-sided.
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mp = |mean| / peak ~0 for motion, ~1 for a pedestal
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frac_neg = share of samples < 0 ~0.3-0.5 for motion, ~0 for a fault
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Why this beats the pre-trigger floor (`offset_scan3.py`): that detector's
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`spread <= 0.02` gate rejects any record whose floor is MOVING, which is
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exactly what an onset is — it discarded the one BE18438 record in which the
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ramp was visible. This test is indifferent to whether the fault is a spike,
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a ramp or a flat pedestal; none of them cross zero.
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⚠ Not a rediscovery of the retracted v1 detector. v1 scored only the
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largest-peak axis and used the mean as a BASELINE estimator, where the median
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was required. Here the mean is the signal itself, per channel, and that is
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what the physics licenses.
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"""
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from __future__ import annotations
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import argparse, csv, re, statistics, sys
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from concurrent.futures import ProcessPoolExecutor, as_completed
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from pathlib import Path
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sys.path.insert(0, str(Path(__file__).resolve().parent.parent))
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from minimateplus.event_file_io import read_blastware_file
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GEO=("Tran","Vert","Long"); K=10.0/32000.0
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_WAVE=re.compile(r"\.[A-Za-z0-9]{2}0[Ww]$"); _STEM=re.compile(r"^([B-Z])(\d{3})")
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_SER=re.compile(rb"[A-Z]{2}\d{3,6}")
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def serial_of(name, path=None):
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m=_STEM.match(name)
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if not m: return "?"
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num=(ord(m.group(1))-ord("B"))*1000+int(m.group(2))
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if path is not None:
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try:
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for s in _SER.findall(Path(path).read_bytes()):
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s=s.decode()
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if s[2:].lstrip("0")==str(num): return s
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except Exception: pass
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return f"BE{num}"
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def scan(ps):
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import logging; logging.disable(logging.WARNING)
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p=Path(ps)
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try: ev=read_blastware_file(p)
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except Exception: return None
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s=ev.raw_samples or {}
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if not all(s.get(c) for c in GEO): return None
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ts=ev.timestamp
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stamp=(f"{ts.year:04d}-{ts.month:02d}-{ts.day:02d}T"
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f"{ts.hour:02d}:{ts.minute:02d}:{ts.second:02d}") if ts else ""
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ser=serial_of(p.name,p); out=[]
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for ch in GEO:
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a=[x*K for x in s[ch]]
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pk=max(abs(x) for x in a)
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if pk<=0: continue
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out.append({"serial":ser,"timestamp":stamp,"filename":p.name,"channel":ch,
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"peak":round(pk,4),
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"mean":round(statistics.fmean(a),4),
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"mp":round(abs(statistics.fmean(a))/pk,4),
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"frac_neg":round(sum(1 for x in a if x<0)/len(a),4),
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"n":len(a)})
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return out
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COLS=["serial","timestamp","filename","channel","peak","mean","mp","frac_neg","n"]
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def main():
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ap=argparse.ArgumentParser()
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ap.add_argument("--dir",required=True); ap.add_argument("--out",required=True)
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ap.add_argument("--jobs",type=int,default=4)
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a=ap.parse_args()
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seen=set(); files=[]
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for q in sorted(Path(a.dir).rglob("*")):
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if q.is_file() and _WAVE.search(q.name) and q.name not in seen:
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seen.add(q.name); files.append(str(q))
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print(f"unique waveform binaries: {len(files)}",flush=True)
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rows=[]
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with ProcessPoolExecutor(max_workers=a.jobs) as ex:
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for i,f in enumerate(as_completed([ex.submit(scan,p) for p in files]),1):
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r=f.result()
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if r: rows.extend(r)
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if i%1000==0: print(f" {i}/{len(files)}",flush=True)
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with open(a.out,"w",newline="") as fh:
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w=csv.DictWriter(fh,fieldnames=COLS); w.writeheader(); w.writerows(rows)
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print(f"\nwrote {a.out} ({len(rows)} channel-rows)")
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if __name__=="__main__": main()
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