{"closest_prior_art":[{"name":"Transportation Research Board structural-monitoring trigger-to-server practice","overlap":"Describes structural-response data transferred to a central server, calibrated event triggers, predetermined pre-event and post-event capture, near-real-time inspection support, and selective high-frequency bursts that avoid overwhelming storage.","remaining_difference":"Does not specify a bounded edge ring store with immutable raw hashes, calibration-interval admission checks, quarantine, provisional-versus-authoritative status, or edge/archive reconciliation.","source_ids":["SRC1"]},{"name":"GeoSIG GMSplus/GMSplus6 recorder","overlap":"Implements configurable multi-channel triggers, pre-event and post-event recording, time-addressable ring-buffer retrieval, automatic upload to a data server, timing support, checksummed secure transfer, and capacity policies.","remaining_difference":"Does not establish a human-reviewed structural-evidence archive or define lifecycle-analysis authority, completeness quarantine, calibration-version applicability, and bidirectional disposition reconciliation.","source_ids":["SRC2"]},{"name":"NI pretrigger acquisition combined with ISO 21289 archival parameters","overlap":"NI documents circular buffering that overwrites oldest samples until a trigger returns selected pre-trigger and post-trigger windows; ISO 21289 establishes specified acquisition parameters for vibration time histories, analysis, reporting, and archiving of structural measurements.","remaining_difference":"The combination does not itself supply selective archival admission, immutable waveform identity, named review authority, explicit non-authoritative quarantine, or cross-store hash-and-time-range reconciliation.","source_ids":["SRC3","SRC4"]}],"contrastive_claim_falsifier":"The remaining claim is falsified if an existing documented structural-monitoring implementation already combines ring-buffer freezing and selective server transfer with immutable raw hashes, interval-valid calibration and clock records, human archival admission, non-authoritative quarantine, bounded expiry, and explicit edge/archive reconciliation; it is also falsified operationally if the replay shows no reduction in lost protected events, incorrect promotions, or undetected discrepancies relative to ordinary trigger-to-server capture.","contrastive_claim_remaining":"Relative to established calibrated trigger-to-server monitoring, adding explicit human archival admission, immutable raw identity, provisional authority markers, quarantine, bounded edge expiry, and hash/time/calibration reconciliation will reduce incorrect promotion and undetected loss of structural event evidence during rollover without reducing protected-event retention.","experiment_id":"eoa_inverse_innovation_exp13_second_slot_policy60_20260806","gates":{"adequate_source_search":{"rationale":"Four search lanes covered the proposal directly, older structural-monitoring and pretrigger terminology, commercial recorder and DAQ practice, vibration-archiving standards, and component combinations. Four opened sources span four publishers and include first-party documentation and an official international standard.","source_ids":["SRC1","SRC2","SRC3","SRC4"],"status":"PASS"},"bounded_next_test":{"rationale":"An isolated replay can inject known events, rollover, clock offsets, calibration changes, duplicates, missing metadata, and transfer discrepancies, then measure retention, hash identity, promotions, quarantines, backlog, capacity, and reconciliation outcomes without touching live monitoring or authoritative records.","source_ids":["SRC1","SRC2","SRC3","SRC4"],"status":"PASS"},"distinct_testable_claim":{"rationale":"Triggering, circular pre-event capture, central transfer, calibrated interpretation, and archival parameterization are established, but the searched sources do not disclose the complete authority-marked admission and reconciliation bundle. Its incremental effect is observable in a controlled replay.","source_ids":["SRC1","SRC2","SRC3","SRC4"],"status":"PASS"},"no_obvious_safety_or_authority_stop":{"rationale":"The authorized first step is copied-data offline replay with no live reconfiguration, alarm suppression, model update, archive write, or operational decision. Named owners retain calibration, archival, analytical, inspection, and safety authority; the TRB source likewise places trigger interpretation and action thresholds with engineers and owners.","source_ids":["SRC1"],"status":"PASS"},"supported_problem":{"rationale":"NI explicitly shows that circular pretrigger buffers overwrite their oldest samples. TRB shows why structural monitoring uses calibrated pre/post-event bursts to support engineering decisions without overwhelming storage, while GeoSIG demonstrates bounded ring-buffer retrieval and server upload in commercial practice.","source_ids":["SRC1","SRC2","SRC3"],"status":"PASS"}},"prior_art_disposition":"SUBSTANTIAL_COLLISION","problem_evidence":{"finding":"The problem is visible: bounded circular acquisition overwrites old samples, while structural applications need calibrated pre-event and post-event data, central availability, and controlled storage volume. Existing products and guidance already address much of the capture-and-transfer path, although the searched sources do not show the proposal's full evidence-governance layer.","source_ids":["SRC1","SRC2","SRC3","SRC4"],"status":"SUPPORTED"},"research_id":"eoa_inverse_innovation_exp13_light_screen_20260806","schema_version":1,"screen_id":"E13P103","screen_survival":false,"search_lanes":{"component_combination":{"no_result_note":null,"queries":["structural health monitoring data management archive calibration metadata provenance standard","structural health monitoring integrated monitoring server raw data trigger saved transmitted","SHM data acquisition circular buffer event trigger archive raw waveform"],"source_ids":["SRC1","SRC2","SRC3","SRC4"]},"direct_problem_and_intervention":{"no_result_note":null,"queries":["structural health monitoring edge ring buffer pre-trigger waveform archive calibration metadata","structural monitoring pre-event post-event waveform triggered recording ring buffer","bridge structural monitoring triggered waveform data acquisition pre trigger"],"source_ids":["SRC1","SRC2","SRC3"]},"products_practices_and_standards":{"no_result_note":null,"queries":["FHWA structural monitoring data archive calibration trigger pre event waveform","ISO structural monitoring sensors data acquisition calibration data storage standard","structural health monitoring guidelines data quality calibration synchronization archive raw data"],"source_ids":["SRC1","SRC2","SRC3","SRC4"]},"synonyms_and_historical_terms":{"no_result_note":null,"queries":["structural monitoring pre-event post-event waveform triggered recording ring buffer","bridge monitoring triggered output pretrigger data capture","mechanical vibration shock parameters acquisition reporting archiving time history"],"source_ids":["SRC1","SRC2","SRC3","SRC4"]}},"sources":[{"claims_supported":["Structural-monitoring data are commonly transferred to a central server for engineering use.","Calibrated triggers can capture predetermined data before and after structural events.","Triggered bursts reduce high-frequency storage burden and support inspection, fatigue, and asset decisions."],"publisher":"Transportation Research Board","source_id":"SRC1","source_type":"TRADE_PROFESSIONAL","title":"Transportation Research Circular E-C246: Structural Monitoring","url":"https://onlinepubs.trb.org/onlinepubs/circulars/ec246.pdf"},{"claims_supported":["A commercial recorder provides configurable multi-channel triggering and pre-event/post-event recording.","Users or servers can retrieve time-bounded events from a ring buffer, and ring-buffer files can upload automatically to a data server.","The recorder exposes timing, secure checksummed transfer, recording format, and capacity-management features."],"publisher":"GeoSIG Ltd.","source_id":"SRC2","source_type":"FIRST_PARTY_PRODUCT","title":"GMSplus / GMSplus6 Digital Recorder / Seismograph","url":"https://www.geosig.com/GMSplus---GMSplus6-id12557.aspx"},{"claims_supported":["Pretrigger acquisition uses a circular buffer that replaces the oldest samples when full.","A reference trigger returns specified pre-trigger and post-trigger samples.","Triggered selection conserves acquisition bandwidth and memory."],"publisher":"National Instruments","source_id":"SRC3","source_type":"FIRST_PARTY_PRODUCT","title":"NI-DAQmx Data Acquisition Triggering Techniques Using LabVIEW","url":"https://www.ni.com/en/support/documentation/supplemental/21/ni-daqmx-data-acquisition-triggering-techniques-using-labview.html"},{"claims_supported":["ISO 21289 specifies applicable parameters for vibration measurement, analysis, reporting, and archiving.","The standard applies to structural testing and time-history measurements made with modern data-acquisition systems.","The 2008 edition was confirmed current in 2023."],"publisher":"International Organization for Standardization","source_id":"SRC4","source_type":"OFFICIAL_STANDARD","title":"ISO 21289:2008 — Mechanical vibration and shock — Parameters to be specified for the acquisition of vibration data","url":"https://www.iso.org/standard/35831.html"}],"world_novelty_boundary":"This bounded public-web screen found substantial collision in the capture, buffering, triggering, transfer, calibration, and archival-parameter components. It did not establish whether the residual governance-and-reconciliation bundle exists elsewhere, and cannot establish world novelty, patentability, market size, expert acceptance, or realized value."}