Run T-0078 rejected

· Evidence: SPRT Sequential probability ratio test. Games are played until the accumulated evidence reaches one of two bounds; then the test stops.

Hypothesis

Vorregistriertes koordinatenweises Tuning und SPSA passen vorhandene Suchkonstanten an, ohne neue Suchmechanik einzuführen.

Stages

Elo against the predecessorElo intervals: short stage −157.71 ± 26.80.−200−150−100−500short stage−157.71 ± 26.80short stage · rejected−157.71 ± 26.80 Elo · 454 games
Point estimate with the reported 95-percent half-width, per stage. The dashed line is zero. Estimates from a stopped sequential test are biased by the stopping rule; the interval is nominal.
Field short stage
Verdictrejected
Elo Strength difference to the opponent, estimated from the games, with a 95-percent half-width where the oracle reported one. Never an absolute rating.−157.71 ± 26.80
nElo Normalised Elo: the Elo difference divided by the spread of the game results, so that the SPRT bounds mean the same at different time controls.−215.68 ± 31.96
Games454
Wins / draws / losses65 / 131 / 258
pentanomial Games are played in pairs with swapped colours; the five counts are the pairs scoring 0, ½, 1, 1½ and 2 points.67 / 81 / 60 / 16 / 3
LLR Log-likelihood ratio, the running evidence of an SPRT. It starts at 0; a stage passes at the upper bound (about +2.94) and fails at the lower one (about −2.94).−2.96
Bounds−2.94 … +2.94
SPRT Sequential probability ratio test. Games are played until the accumulated evidence reaches one of two bounds; then the test stops.[0.0, 5.0]
Error rates α / β0.05 / 0.05
Modelnormalized
time control Base time plus increment per move in seconds, e.g. 8+0.08: eight seconds per game plus 0.08 seconds per move.8+0.08
BookA
Opponentvs predecessor
Duration3 min

Provenance

Date
2026-09-14
Started
2026-09-14 14:19:37 UTC
Duration
3 min
Author
Agent F
Epoch
4
Gatekeeper
passed
Bench nodes
3,311
Metadata: commit and checksums (5)
Commit
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SHA-256 A cryptographic hash. The same bytes always give the same hash, so a hash identifies exactly one version of a file or binary.
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SHA-256 A cryptographic hash. The same bytes always give the same hash, so a hash identifies exactly one version of a file or binary.
fe77c44152aedb17ff5efc3c4ce2b13038e3193fcd21ba3f141aea8858eba79a
SHA-256 A cryptographic hash. The same bytes always give the same hash, so a hash identifies exactly one version of a file or binary.
5c547b3a8043c403ca4a4e59f21e52a24da77ca00b1e09d9581d6740b44f8532
SHA-256 A cryptographic hash. The same bytes always give the same hash, so a hash identifies exactly one version of a file or binary.
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