ALBANO Aurora Borealis Project - 7 Tables: Detection Summary, Li Extraction, Prime & Fibonacci Intervals, Data Analysis, Dual Validation, Schumann 3Hz Carrier, Prediction 17 Sept 2026 - DOI-10 Supplement to DOI-9

ALBANO Aurora Borealis Project – DOI-10 – Experimental dataset comprising 7 white tables, supplement to ALBANO THEORY DOI-9 (10.5281/zenodo.22679194). ABSTRACT:This dataset provides the full experimental chain for aurora borealis detection and prediction using smartphone-based sensors and ALBANO numerical ordering method. CONTENT – 7 TABLES: Table 1/7 – Detection Summary:Dual video detection aurora1.mp4 score 0.885 and aurora2.mp4 score 1.00. Location Cepheus 71°N, RA 21.50h Dec +76.56°, altitude 120km, time window 21:00-03:00 UTC, method smartphone 30fps photometric detection, status validated, confidence high. Ref ALBANO-AB SCI-OBS-001. Table 2/7 – Li Extraction:Method smartphone extraction handheld imaging module. Acquisition 290 frames @30fps duration 9.67s. Extraction metrics: TOTAL Li 289 bits, ROI 20%-80%, signal confidence 97.3%, status complete. Bitstream TGCCCCGTAG CCAGTGCCGTTAGCCGTAGGCCTAGCTAAGCTTGGCAATGCCGT. Binary visualization 8 lines. Palindromes detected 12 (LEN4:5 LEN6:4 LEN8:3) top CCGTGCC pos 047,112,204 validated via KMP. Ref ALBANO-AB Li-EXTRACT v2.7. Table 3/7 – Prime & Fibonacci Intervals:Scientific analysis detection summary 2024-03-17 observation window 21:00-03:00 UTC. Prime intervals >10: 16 detected. Fibonacci intervals: 33 sequences mapped. Time codes 21:00-03:00 active monitoring. Prime visualization list Sequence A 11,13,17,23,31,37 Sequence B 23,29,31,41,47,53 Sequence C 41,43,47,59,67,71. Score calculation (Prime Count x 0.05)+(Fibonacci Count x 0.02)=SCORE (16x0.05)+(33x0.02)=0.80+0.20=1.00 Status nominal confidence 100%. SNR 24.7 dB. Ref ALBANO-AB-003/07. Table 4/7 – Data Analysis:Sequence summary bases 144 GC content 44.4% status stable. Gene markers ATG start codon pos 15 located codon frame +1 functional promoter region ATG start codon pos 123 secondary ORF. Sequence (5'->3') 144 bases total. Statistical analysis bioinformatics basic analysis. Results: GC balanced markers yes, helix stability high Tm ~68.3°C, codon frame +1 no frameshift, secondary structure stable stem-loop MFE -26.8 kcal/mol. Payload classification class stable risk low confidence 97.2% mode analysis link secure no anomaly. Timestamp 2024-02-17 03:22:03 UTC. Table 5/7 – Dual Detection Validation:Dual video stream validation timestamp 2024-01-17 // 03:22:11 UTC status active. Video A aurora1.mp4 validation 0.885 88.5% palindromes 54 primes 12 Fibonacci 22 bit depth 289 bits. Video B aurora2.mp4 validation 1.00 100% palindromes 64 primes 16 Fibonacci 33. Comparison metrics table. Result validation pass both streams confirmed bit consistency match 289/289 dual detection synchronized. Ver 1.3.7 confidence 99.8% no anomaly. Geolocation LAT 69.06N LON 20.20E. Table 6/7 – Schumann Carrier 3Hz:Carrier frequency range 3Hz-7.83Hz band low-frequency ionospheric monitoring. Magnetometer detection Phyphox mobile sensor via Phyphox App sampling 50Hz magnetometer axis X/Y/Z. 7.83Hz Earth resonance cavity EM fundamental Schumann resonance natural peak from lightning. Li aurora modulation spectral modulation observed carrier modulates auroral brightness at 3Hz envelope. Frequency response measured spectrum graph 3.00Hz, 5.20Hz, 6.40Hz, 7.83Hz. Method data acquisition site Rome Italy measurement with mobile phone Phyphox 50Hz collect 60s. Location Rome LAT 41.9028N LON 12.4964E. Table 7/7 – Prediction 17 Sept 2026:Prediction deposited 07/09/2026 Rome. Live verification 17/09/2026 21:00-03:00 UTC. Expected score >0.85 confidence high threshold 0.85. Method smartphone + webcam live capture locations Tromsø Kiruna Svalbard sensors Phyphox magnetometer light audio. Data protocol real-time stream validation frame-sync timekeeping NTP/UTC photometry sky and geomagnetic correlation. Zenodo DOI pending post-verification. Claim priority statement publicly timestamped prior to live verification priority held by ALBANO Observatory for 17 Sept 2026 method reproducible disclosed for peer validation claim timestamp 2026-09-07 14:22 UTC CEST. Status awaiting live data 2026-09-17 21:00 UTC. THEORETICAL BASIS:This experimental work applies ALBANO THEORY from DOI-9: https://doi.org/10.5281/zenodo.22679194Formula: ALBANO = [ (B × SNR × fs × Φrel_reale) - (IA × π) ] × Φ where Φrel_reale = 1/(1+D). Distance decides. Autore: Stefano Albano, Roma, Italy Contact: [email protected] Keyword: ALBANO, aurora borealis, aurora, Schumann resonance, Schumann carrier 3Hz, Phyphox, magnetometer, prime intervals, Fibonacci intervals, palindromes, Li extraction, dual validation, prediction 17 September 2026, Tromsø, Kiruna, Svalbard, smartphone sensing, DOI-9, 10.5281/zenodo.22679194 LICENSE: CC-BY-4.0 BRAND: ALBANO . Reference DOI-9 10.5281/zenodo.22679194 in all tables. Orcid: 0009-0002-5239-0779

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Zenodo (CERN European Organization for Nuclear Research)
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2026-09-09
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https://doi.org/10.5281/zenodo.22679865
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Astronomical Observations and Instrumentation
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ALBANO Aurora Borealis Project - 7 Tables: Detection Summary, Li Extraction, Prime & Fibonacci Intervals, Data Analysis, Dual Validation, Schumann 3Hz Carrier, Prediction 17 Sept 2026 - DOI-10 Supplement to DOI-9

Stefano Albano
Zenodo (CERN European Organization for Nuclear Research)
Astronomical Observations and Instrumentation
preprint

ALBANO Aurora Borealis Project - 7 Tables: Detection Summary, Li Extraction, Prime & Fibonacci Intervals, Data Analysis, Dual Validation, Schumann 3Hz Carrier, Prediction 17 Sept 2026 - DOI-10 Supplement to DOI-9

Stefano Albano
preprint en

Abstract

ALBANO Aurora Borealis Project – DOI-10 – Experimental dataset comprising 7 white tables, supplement to ALBANO THEORY DOI-9 (10.5281/zenodo.22679194). ABSTRACT:This dataset provides the full experimental chain for aurora borealis detection and prediction using smartphone-based sensors and ALBANO numerical ordering method. CONTENT – 7 TABLES: Table 1/7 – Detection Summary:Dual video detection aurora1.mp4 score 0.885 and aurora2.mp4 score 1.00. Location Cepheus 71°N, RA 21.50h Dec +76.56°, altitude 120km, time window 21:00-03:00 UTC, method smartphone 30fps photometric detection, status validated, confidence high. Ref ALBANO-AB SCI-OBS-001. Table 2/7 – Li Extraction:Method smartphone extraction handheld imaging module. Acquisition 290 frames @30fps duration 9.67s. Extraction metrics: TOTAL Li 289 bits, ROI 20%-80%, signal confidence 97.3%, status complete. Bitstream TGCCCCGTAG CCAGTGCCGTTAGCCGTAGGCCTAGCTAAGCTTGGCAATGCCGT. Binary visualization 8 lines. Palindromes detected 12 (LEN4:5 LEN6:4 LEN8:3) top CCGTGCC pos 047,112,204 validated via KMP. Ref ALBANO-AB Li-EXTRACT v2.7. Table 3/7 – Prime & Fibonacci Intervals:Scientific analysis detection summary 2024-03-17 observation window 21:00-03:00 UTC. Prime intervals >10: 16 detected. Fibonacci intervals: 33 sequences mapped. Time codes 21:00-03:00 active monitoring. Prime visualization list Sequence A 11,13,17,23,31,37 Sequence B 23,29,31,41,47,53 Sequence C 41,43,47,59,67,71. Score calculation (Prime Count x 0.05)+(Fibonacci Count x 0.02)=SCORE (16x0.05)+(33x0.02)=0.80+0.20=1.00 Status nominal confidence 100%. SNR 24.7 dB. Ref ALBANO-AB-003/07. Table 4/7 – Data Analysis:Sequence summary bases 144 GC content 44.4% status stable. Gene markers ATG start codon pos 15 located codon frame +1 functional promoter region ATG start codon pos 123 secondary ORF. Sequence (5'->3') 144 bases total. Statistical analysis bioinformatics basic analysis. Results: GC balanced markers yes, helix stability high Tm ~68.3°C, codon frame +1 no frameshift, secondary structure stable stem-loop MFE -26.8 kcal/mol. Payload classification class stable risk low confidence 97.2% mode analysis link secure no anomaly. Timestamp 2024-02-17 03:22:03 UTC. Table 5/7 – Dual Detection Validation:Dual video stream validation timestamp 2024-01-17 // 03:22:11 UTC status active. Video A aurora1.mp4 validation 0.885 88.5% palindromes 54 primes 12 Fibonacci 22 bit depth 289 bits. Video B aurora2.mp4 validation 1.00 100% palindromes 64 primes 16 Fibonacci 33. Comparison metrics table. Result validation pass both streams confirmed bit consistency match 289/289 dual detection synchronized. Ver 1.3.7 confidence 99.8% no anomaly. Geolocation LAT 69.06N LON 20.20E. Table 6/7 – Schumann Carrier 3Hz:Carrier frequency range 3Hz-7.83Hz band low-frequency ionospheric monitoring. Magnetometer detection Phyphox mobile sensor via Phyphox App sampling 50Hz magnetometer axis X/Y/Z. 7.83Hz Earth resonance cavity EM fundamental Schumann resonance natural peak from lightning. Li aurora modulation spectral modulation observed carrier modulates auroral brightness at 3Hz envelope. Frequency response measured spectrum graph 3.00Hz, 5.20Hz, 6.40Hz, 7.83Hz. Method data acquisition site Rome Italy measurement with mobile phone Phyphox 50Hz collect 60s. Location Rome LAT 41.9028N LON 12.4964E. Table 7/7 – Prediction 17 Sept 2026:Prediction deposited 07/09/2026 Rome. Live verification 17/09/2026 21:00-03:00 UTC. Expected score >0.85 confidence high threshold 0.85. Method smartphone + webcam live capture locations Tromsø Kiruna Svalbard sensors Phyphox magnetometer light audio. Data protocol real-time stream validation frame-sync timekeeping NTP/UTC photometry sky and geomagnetic correlation. Zenodo DOI pending post-verification. Claim priority statement publicly timestamped prior to live verification priority held by ALBANO Observatory for 17 Sept 2026 method reproducible disclosed for peer validation claim timestamp 2026-09-07 14:22 UTC CEST. Status awaiting live data 2026-09-17 21:00 UTC. THEORETICAL BASIS:This experimental work applies ALBANO THEORY from DOI-9: https://doi.org/10.5281/zenodo.22679194Formula: ALBANO = [ (B × SNR × fs × Φrel_reale) - (IA × π) ] × Φ where Φrel_reale = 1/(1+D). Distance decides. Autore: Stefano Albano, Roma, Italy Contact: [email protected] Keyword: ALBANO, aurora borealis, aurora, Schumann resonance, Schumann carrier 3Hz, Phyphox, magnetometer, prime intervals, Fibonacci intervals, palindromes, Li extraction, dual validation, prediction 17 September 2026, Tromsø, Kiruna, Svalbard, smartphone sensing, DOI-9, 10.5281/zenodo.22679194 LICENSE: CC-BY-4.0 BRAND: ALBANO . Reference DOI-9 10.5281/zenodo.22679194 in all tables. Orcid: 0009-0002-5239-0779

Zenodo (CERN European Organization for Nuclear Research)
Astronomical Observations and Instrumentation
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