{"schema_version":1,"experiment_id":"eoa_inverse_innovation_exp05_complete_proposal_portfolio20_20260803","cell_id":"invariant_mode_decomposition_design__information_theory","portfolio_valid":true,"proposal_assessments":[{"proposal_index":1,"complete":true,"causally_faithful":true,"materially_distinct":true,"reason":"Operationally specifies the error-transition state, modal analysis, leverage-based bit reallocation, matched baselines, held-out tests, authority, limits, and rollback. Its causal core is faithful: coupled predictive-codec errors propagate along modes, and mode-aligned refresh coefficients damp consequential persistent directions."},{"proposal_index":2,"complete":true,"causally_faithful":true,"materially_distinct":true,"reason":"Defines the source-to-release operator, paired SVD modes, disclosure-and-utility selection rule, directional filtering controls, residual tests, governance, and falsifiers. It faithfully targets joint disclosure directions rather than individual outputs while explicitly remaining subordinate to formal privacy requirements."},{"proposal_index":3,"complete":true,"causally_faithful":true,"materially_distinct":true,"reason":"Specifies scenario-specific survivor operators, weak-subspace selection, parity and placement controls, resource-matched comparisons, dual decoding, migration safeguards, and rollback. It faithfully uses low-gain source modes to reveal directional recoverability weaknesses hidden by shard counts."},{"proposal_index":4,"complete":true,"causally_faithful":true,"materially_distinct":true,"reason":"Defines a repeated command-confusion transformation, excludes the conservation mode, classifies nontrivial modes, maps token and confirmation changes to modal damping, and provides controlled validation and safety governance. The intervention follows the claimed causal path from persistent confusion modes to hazardous substitutions."},{"proposal_index":5,"complete":true,"causally_faithful":true,"materially_distinct":true,"reason":"Defines the transient routing operator and packet-location state, identifies slow trapping modes, maps routing controls to modal persistence, and includes budget-matched trials, residual checks, drift limits, and rollback. Node loadings are used as bounded participation indicators rather than treated as faults, preserving the archetype's traceability requirement."}],"pairwise_assessments":[{"proposal_a":1,"proposal_b":2,"same_problem":false,"same_intervention":false,"independent_opportunity":true,"key_difference":"Proposal 1 corrects temporally propagated reconstruction error by transmitting protected modal refresh coefficients; proposal 2 reduces joint privacy disclosure by filtering or noising output-side modes of a source-to-release channel."},{"proposal_a":1,"proposal_b":3,"same_problem":false,"same_intervention":false,"independent_opportunity":true,"key_difference":"Proposal 1 changes transient codec refresh allocation to reset persistent prediction-error modes; proposal 3 changes durable parity projections and placement to strengthen weak archive-recovery directions after failures."},{"proposal_a":1,"proposal_b":4,"same_problem":false,"same_intervention":false,"independent_opportunity":true,"key_difference":"Proposal 1 addresses numerical state-error persistence inside predictive decoding with transmitted corrections; proposal 4 addresses semantic command substitutions across relays by redesigning vocabulary tokens and confirmation checks."},{"proposal_a":1,"proposal_b":5,"same_problem":false,"same_intervention":false,"independent_opportunity":true,"key_difference":"Proposal 1 damps coupled reconstruction-error propagation within a telemetry codec; proposal 5 releases packet mass from network trapping modes by changing forwarding probabilities and gateway-contact allocation."},{"proposal_a":2,"proposal_b":3,"same_problem":false,"same_intervention":false,"independent_opportunity":true,"key_difference":"Proposal 2 attenuates high-consequence disclosure transmission through observable analytics outputs; proposal 3 adds information to weak storage-recovery directions through redesigned parity shards and failure-domain placement."},{"proposal_a":2,"proposal_b":4,"same_problem":false,"same_intervention":false,"independent_opportunity":true,"key_difference":"Proposal 2 governs private inference from correlated data releases using a directional output filter; proposal 4 governs hazardous spoken-command confusion using codeword and confirmation redesign."},{"proposal_a":2,"proposal_b":5,"same_problem":false,"same_intervention":false,"independent_opportunity":true,"key_difference":"Proposal 2 reduces protected-information leakage across a static release mapping; proposal 5 reduces delivery delay caused by repeated packet circulation through a transient routing network."},{"proposal_a":3,"proposal_b":4,"same_problem":false,"same_intervention":false,"independent_opportunity":true,"key_difference":"Proposal 3 repairs weak numerical recoverability of archived arrays with parity projections and placement; proposal 4 repairs persistent semantic confusion with altered spoken tokens and targeted confirmations."},{"proposal_a":3,"proposal_b":5,"same_problem":false,"same_intervention":false,"independent_opportunity":true,"key_difference":"Proposal 3 changes storage-code geometry so surviving shards better represent vulnerable source directions; proposal 5 changes routing dynamics so undelivered packets escape persistent relay-node patterns."},{"proposal_a":4,"proposal_b":5,"same_problem":false,"same_intervention":false,"independent_opportunity":true,"key_difference":"Proposal 4 damps repeated class-confusion modes by modifying a command codebook and checks; proposal 5 damps packet-location trapping modes by modifying network forwarding and contact controls."}],"replacement_indices":[],"rationale":"All five proposals are operationally complete, preserve the archetype's transformation-to-modes-to-ranked-action-to-residual-and-drift-check causal structure, and trace modal results back to actionable domain variables without overstating global or causal meaning. Although they share the required modal-analysis archetype, their affected problems, interventions, and causal paths are independently adoptable: codec-state correction, privacy-release filtering, archive parity redesign, command-codebook redesign, and relay-routing repair. No proposal is merely a renamed variant, added feature, narrower population, or implementation-level variation of another."}