Spaces:
Running
Running
File size: 39,600 Bytes
518343a | 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50 51 52 53 54 55 56 57 58 59 60 61 62 63 64 65 66 67 68 69 70 71 72 73 74 75 76 77 78 79 80 81 82 83 84 85 86 87 88 89 90 91 92 93 94 95 96 97 98 99 100 101 102 103 104 105 106 107 108 109 110 111 112 113 114 115 116 117 118 119 120 121 122 123 124 125 126 127 128 129 130 131 132 133 134 135 136 137 138 139 140 141 142 143 144 145 146 147 148 149 150 151 152 153 154 155 156 157 158 159 160 161 162 163 164 165 166 167 168 169 170 171 172 173 174 175 176 177 178 179 180 181 182 183 184 185 186 187 188 189 190 191 192 193 194 195 196 197 198 199 200 201 202 203 204 205 206 207 208 209 210 211 212 213 214 215 216 217 218 219 220 221 222 223 224 225 226 227 228 229 230 231 232 233 234 235 236 237 238 239 240 241 242 243 244 245 246 247 248 249 250 251 252 253 254 255 256 257 258 259 260 261 262 263 264 265 266 267 268 269 270 271 272 273 274 275 276 277 278 279 280 281 282 283 284 285 286 287 288 289 290 291 292 293 294 295 296 297 298 299 300 301 302 303 304 305 306 307 308 309 310 311 312 313 314 315 316 317 318 319 320 321 322 323 324 325 326 327 328 329 330 331 332 333 334 335 336 337 338 339 340 341 342 343 344 345 346 347 348 349 350 351 352 353 354 355 356 357 358 359 360 361 362 363 364 365 366 367 368 369 370 371 372 373 374 375 376 377 378 379 380 381 382 383 384 385 386 387 388 389 390 391 392 393 394 395 396 397 398 399 400 401 402 403 404 405 406 407 408 409 410 411 412 413 414 415 416 417 418 419 420 421 422 423 424 425 426 427 428 429 430 431 432 433 434 435 436 437 438 439 440 441 442 443 444 445 446 447 448 449 450 451 452 453 454 455 456 457 458 459 460 461 462 463 464 465 466 467 468 469 470 471 472 473 474 475 476 477 478 479 480 481 482 483 484 485 486 487 488 489 490 491 492 493 494 495 496 497 498 499 500 501 502 503 504 505 506 507 508 509 510 511 512 513 514 515 516 517 518 519 520 521 522 523 524 525 526 527 528 529 530 531 532 533 534 535 536 537 538 539 540 541 542 543 544 545 546 547 548 549 550 551 552 553 554 555 556 557 558 559 560 561 562 563 564 565 566 567 568 569 570 571 572 573 574 575 576 577 578 579 580 581 582 583 584 585 586 587 588 589 590 591 592 593 594 595 596 597 598 599 600 601 602 603 604 605 606 607 608 609 610 611 612 613 614 615 616 617 618 619 620 621 622 623 624 625 626 627 628 629 630 631 632 633 634 635 636 637 638 639 640 641 642 643 644 645 646 647 648 649 650 651 652 653 654 655 656 657 658 659 660 661 662 663 664 665 666 667 668 669 670 671 672 673 674 675 676 677 678 679 680 681 682 683 684 685 686 687 688 689 690 691 692 693 694 695 696 697 698 699 700 701 702 703 704 705 706 707 708 709 710 711 712 713 714 715 716 717 718 719 720 721 722 723 724 | // AERIAL TWIN — operational milestone packs.
//
// Each pack is one of the 9 milestones in the Aerial Twin doctrine roadmap,
// rendered as its own visitable surface under /a11oy/aerial-twin/<slug>.
// The first milestone (the doctrine page itself) is the parent surface; the
// remaining 8 are defined here.
//
// Each pack documents what shipped today: the operational capability that
// each engine module exposes, the deliverables that depend on it, and the
// guardrails that keep it in scope.
export type MilestoneSlug =
| 'sionna-eval'
| 'vessels-port'
| 'terra-building'
| 'sentra-anomaly'
| 'federated-ledger'
| 'ric-binding'
| 'ai-ran'
| 'attestation-soc2';
export type MilestonePhase = '0\u20136' | '7\u201312' | '13\u201324';
export interface MilestoneKpi {
label: string;
value: string | number;
sub: string;
}
export interface Deliverable {
id: string;
name: string;
oneLine: string;
detail: string;
module: string;
}
export interface EngineCapability {
module: string;
capability: string;
detail: string;
}
export interface MilestoneGuardrail {
layer: string;
control: string;
enforcedBy: string;
}
export interface MilestonePack {
slug: MilestoneSlug;
number: number;
phase: MilestonePhase;
title: string;
tagline: string;
doctrine: string;
kpis: readonly MilestoneKpi[];
deliverables: readonly Deliverable[];
oss: readonly EngineCapability[];
guardrails: readonly MilestoneGuardrail[];
related: readonly MilestoneSlug[];
}
// ---------------------------------------------------------------------------
// 2 \u2014 Sionna RT evaluation harness
// ---------------------------------------------------------------------------
const M2_SIONNA_EVAL: MilestonePack = {
slug: 'sionna-eval',
number: 2,
phase: '0\u20136',
title: 'Sionna RT evaluation harness',
tagline: 'A sandboxed twin engine wrapping public Sionna RT against a single reference scene. Reproducible CIRs, gated by Mirror Eval.',
doctrine:
'Stand up the smallest credible twin engine. One public scene catalogue entry, one ray tracer (Sionna RT, Apache-2.0), one set of materials (ITU-R P.2040). Output channel impulse responses are hash-anchored and reproducible across runs. Every simulation is a Mirror Eval episode with a baseline comparison gate.',
kpis: [
{ label: 'TWIN ENGINE', value: '1', sub: 'Sionna RT 1.x in compartment' },
{ label: 'REFERENCE SCENE', value: '1', sub: 'public catalogue (Munich)' },
{ label: 'CIR REPRODUCIBILITY', value: 'hash', sub: 'scene + ruleset + seed' },
{ label: 'PROMOTION GATE', value: 'Mirror Eval', sub: 'baseline-delta bounded' },
],
deliverables: [
{
id: 'twin-engine',
name: 'Sandboxed twin engine',
oneLine: 'Sionna RT runs inside a Sentra capability compartment with no egress to RF hardware.',
detail: 'Capability compartment strips the egress namespace down to a read-only scene store and a write-only CIR sink. Engine version, ruleset version, and scene hash are captured per call.',
module: 'Sentra Sandbox + A11oy Capability Registry',
},
{
id: 'reference-scene',
name: 'Reference scene catalogue',
oneLine: 'A single public scene (Munich from the open Sionna catalogue) for the v1 engine.',
detail: 'Triangle mesh + per-surface ITU-R P.2040 materials. Scene hash committed to Cerberus per release. No owner-supplied geometry yet \u2014 that lands in milestone 4 (Terra in-building).',
module: 'A11oy Scene Store + Hephaestus Provenance',
},
{
id: 'cir-snapshots',
name: 'Reproducible CIR snapshots',
oneLine: 'Per (tx, rx, frequency, seed) tuple the engine writes a hash-anchored impulse-response tensor.',
detail: 'Outputs sit in the per-tenant evidence partition. Re-running the same tuple yields a byte-identical tensor; any drift triggers a Mirror Eval failure.',
module: 'Cerberus Evidence Vault',
},
{
id: 'mirror-eval-gate',
name: 'Mirror Eval CIR gate',
oneLine: 'Every CIR batch is compared against a frozen baseline. Excess delta blocks downstream promotion.',
detail: 'Default metric is per-tap complex-amplitude L2 distance, with thresholds per scene. Failures are routed to the Sentra Approval Queue.',
module: 'A11oy Mirror Eval + Sentra Approval Queue',
},
{
id: 'planner-action',
name: 'A11oy planner action',
oneLine: 'Planner can invoke aerial.twin.simulate with a typed payload and receive a signed evidence handle back.',
detail: 'Action signature, parameter schema, and output schema are registered in the A11oy capability registry. Constitution admission is required before promotion.',
module: 'A11oy Planner + Capability Registry',
},
],
oss: [
{
module: 'Aerial Twin Engine',
capability: 'Differentiable ray tracer with UTD diffraction and ITU-R P.2040 materials.',
detail: 'Wrapped behind the A11oy capability registry. Scene + ruleset + seed are hashed and committed to Cerberus per call. Engine release is pinned through Hephaestus provenance; no in-tree forks.',
},
{
module: 'A11oy PHY Adapter',
capability: 'OFDM resource grid + CIR ingest matched to the engine\u2019s tensor layout.',
detail: 'Downstream PHY blocks consume CIR tensors directly. The harness ships no learned PHY weights at v1 \u2014 only the typed I/O contract.',
},
{
module: 'Lab Validation Pipeline',
capability: 'Owner-licensed SDR captures decoded with a known flowgraph for ground-truth comparison.',
detail: 'Runs lab-side behind a service boundary. Used to bound engine error against measured signal; never drives production output.',
},
],
guardrails: [
{ layer: 'Sandbox', control: 'Engine has no egress to RF hardware. Outputs are write-only to the evidence vault.', enforcedBy: 'Sentra capability compartment + connector firewall.' },
{ layer: 'Reproducibility', control: 'Scene hash, ruleset hash, seed, and engine version are required for every call.', enforcedBy: 'A11oy capability registry pre-call validator.' },
{ layer: 'Promotion', control: 'No CIR batch is consumed downstream until the Mirror Eval gate passes.', enforcedBy: 'Mirror Eval policy attached to aerial.twin.simulate.' },
],
related: ['vessels-port', 'terra-building'],
};
// ---------------------------------------------------------------------------
// 3 \u2014 Vessels port-coverage demo
// ---------------------------------------------------------------------------
const M3_VESSELS_PORT: MilestonePack = {
slug: 'vessels-port',
number: 3,
phase: '0\u20136',
title: 'Vessels port-coverage demo',
tagline: 'One reference port. Per-berth coverage maps and vessel-to-shore link budgets, signed and bound to the Vessels asset registry.',
doctrine:
'The first vertical the twin serves. A single reference port (public OSM mesh), two bands (mid-band and mmWave), and four sea-state regimes. Output is a per-berth heatmap + per-route link-budget timeline + a signed coverage attestation per berth, bound to the Vessels asset ID.',
kpis: [
{ label: 'REFERENCE PORT', value: '1', sub: 'public OSM mesh' },
{ label: 'BANDS', value: '2', sub: '3.5 GHz mid + 28 GHz mmWave' },
{ label: 'SEA-STATE REGIMES', value: '4', sub: 'calm \u2192 rough' },
{ label: 'ATTESTATION SIG', value: 'Cerberus', sub: 'bound to asset ID' },
],
deliverables: [
{
id: 'port-mesh',
name: 'Reference port mesh',
oneLine: 'Triangle mesh of a single port assembled from public cadastral and OSM Buildings data.',
detail: 'Per-surface materials drawn from the ITU-R P.2040 catalogue. Mesh is checked into the scene store with a hash and version. No proprietary terminal scans, no scraped vendor BIM.',
module: 'Aerial Twin Scene Store + Hephaestus',
},
{
id: 'coverage-heatmap',
name: 'Per-berth coverage heatmap',
oneLine: 'Received-power map across each berth, computed for both the mid-band and mmWave band.',
detail: 'Coverage map is a regular grid at 1 m spacing per berth. Output rendered in the Vessels surface as a layered overlay on the existing port plan.',
module: 'Vessels + Aerial Twin Engine',
},
{
id: 'link-budget',
name: 'Vessel-to-shore link budget timeline',
oneLine: 'For each scheduled arrival, a timeline of expected link budget under the prevailing sea state and weather.',
detail: 'Pulls vessel ETA from the Vessels schedule, sea state from the existing weather feed, and CIR distributions from the twin. Output is a per-arrival risk score on the Vessels operations board.',
module: 'Vessels Schedule + Aerial Twin Engine',
},
{
id: 'attestation',
name: 'Signed coverage attestation',
oneLine: 'Per-berth attestation PDF: signed, hash-bound to the asset ID and the scene version.',
detail: 'Generated by the existing investor-doc PDF renderer pattern. Stored in Cerberus with a signature chain back to the engine + scene + ruleset.',
module: 'Vessels + Cerberus + PDF renderer',
},
{
id: 'asset-binding',
name: 'Vessels asset-registry binding',
oneLine: 'Every twin output is keyed to a Vessels asset ID (berth, crane, mooring point).',
detail: 'No floating outputs. If the asset is retired in Vessels, the attestation moves to historical evidence and is excluded from active operations.',
module: 'Vessels Asset Registry + Cerberus',
},
],
oss: [
{
module: 'Aerial Twin Engine \u2014 Coverage Map',
capability: 'Per-cell received-power computation across a regular receiver grid with antenna-pattern application per transmitter.',
detail: 'Maps render directly into the Vessels surface as the canonical output. Each map is hash-bound to the scene and ruleset versions; no notebook artefacts.',
},
{
module: 'A11oy gNB Twin',
capability: 'Software gNB driven by the twin\u2019s CIR feed, with FAPI-style PHY/MAC split and slot-based scheduling.',
detail: 'Acts as the radio counterpart to the Vessels schedule. Pinned tag, vendored patches via Hephaestus, no live emission.',
},
{
module: 'Sea-State Link Budget',
capability: 'BLER curves derived from twin CIRs under each of the four sea-state regimes.',
detail: 'Each timeline tap carries its scene + sea-state context. Surfaces on the Vessels operations board as a per-arrival risk score.',
},
],
guardrails: [
{ layer: 'Inputs', control: 'Public OSM and cadastral data only. Owner-provided port plans flow through the gated ingestion in milestone 4.', enforcedBy: 'A11oy ingestion gate.' },
{ layer: 'Emission', control: 'Twin reads, never transmits. Vessels asset registry is read-only from the twin\u2019s side.', enforcedBy: 'Sentra connector firewall.' },
{ layer: 'Asset binding', control: 'No twin output is published without a live Vessels asset ID.', enforcedBy: 'Cerberus emit gate.' },
],
related: ['sionna-eval', 'sentra-anomaly', 'attestation-soc2'],
};
// ---------------------------------------------------------------------------
// 4 \u2014 Terra in-building twin
// ---------------------------------------------------------------------------
const M4_TERRA_BUILDING: MilestonePack = {
slug: 'terra-building',
number: 4,
phase: '7\u201312',
title: 'Terra in-building twin',
tagline: 'Single-floor mmWave + sub-6 coverage twin for one reference asset, with owner-provided geometry intake and a signed pre-leasing attestation.',
doctrine:
'The first vertical that consumes owner-provided geometry. A single class-A office floor, mmWave + sub-6 coverage per square meter, mmWave shadowing analysis per workspace, and a signed pre-leasing attestation. Owner geometry never re-shared across tenants.',
kpis: [
{ label: 'REFERENCE FLOOR', value: '4500 m\u00b2', sub: 'class-A office, single floor' },
{ label: 'BANDS', value: '2', sub: 'sub-6 + 28 GHz mmWave' },
{ label: 'GRID RESOLUTION', value: '0.5 m', sub: 'coverage per square' },
{ label: 'ATTESTATION', value: 'PDF', sub: 'pre-leasing artefact' },
],
deliverables: [
{
id: 'floor-mesh',
name: 'Reference floor mesh',
oneLine: 'A single class-A office floor expressed as an OpenUSD scene with per-surface materials.',
detail: 'Mesh derived from owner-provided floor plan plus the public ITU-R P.2040 material catalogue. Per-tenant: never shared across customers.',
module: 'Terra Asset Registry + Aerial Twin Scene Store',
},
{
id: 'coverage-grid',
name: 'Coverage grid per square meter',
oneLine: 'Sub-6 and mmWave received-power maps at 0.5 m grid spacing across the floor.',
detail: 'Output overlays directly onto the Terra floor view. Per-cell coverage value is bound to the scene + ruleset hash for reproducibility.',
module: 'Terra + Aerial Twin Engine',
},
{
id: 'shadowing',
name: 'mmWave shadowing analysis',
oneLine: 'Per-workspace shadowing profile that flags blockage hotspots before installation.',
detail: 'Computed from the diffraction + reflection path types in the twin. Surfaces in the Terra workspace planner as a coverage risk per seat.',
module: 'Terra Workspace Planner',
},
{
id: 'attestation-pdf',
name: 'Pre-leasing attestation PDF',
oneLine: 'A signed, brand-styled PDF the owner can attach to a lease packet.',
detail: 'Built on the existing investor-doc PDF renderer pattern. Cover page + per-band coverage map + workspace shadowing + scene hash + signature chain.',
module: 'Terra + Cerberus + PDF renderer',
},
{
id: 'geometry-intake',
name: 'Owner-provided geometry intake',
oneLine: 'Sandboxed ingestion path for owner-supplied floor plans (DWG / IFC / GLB).',
detail: 'Conversion runs in a Sentra capability compartment with no egress. Output is committed to the per-tenant scene partition only.',
module: 'Sentra Sandbox + A11oy Ingestion Gate',
},
],
oss: [
{
module: 'Aerial Twin Engine \u2014 Indoor Path Tracer',
capability: 'Indoor path tracing with UTD diffraction and scattering for mmWave shadowing modelling.',
detail: 'Output renders natively into the Terra floor view. Per-tenant scene partition prevents cross-customer leakage.',
},
{
module: 'A11oy DAS Topology Generator',
capability: 'Distributed antenna system topology generated from the floor mesh with indoor gNB simulation.',
detail: 'Owner can A/B alternate antenna placements before installation. Topology is data-driven from the scene rather than hand-configured.',
},
{
module: 'A11oy Real-time PHY Backend (optional)',
capability: 'Disciplined real-time PHY/MAC backend, selectable per tenant where service-boundary licensing is acceptable.',
detail: 'Lives strictly behind a network service boundary. Never linked into closed-source binaries; off by default.',
},
],
guardrails: [
{ layer: 'Tenant scope', control: 'Owner-provided geometry stays on-tenant. Federated layer pools statistics only (milestone 6).', enforcedBy: 'Cerberus per-tenant partition.' },
{ layer: 'Ingestion', control: 'All owner geometry conversion runs in a sandboxed compartment with no network egress.', enforcedBy: 'Sentra capability compartment.' },
{ layer: 'Provenance', control: 'Every PDF carries a signature chain back to the scene + ruleset + engine version.', enforcedBy: 'Hephaestus provenance gate + Cerberus.' },
],
related: ['vessels-port', 'attestation-soc2'],
};
// ---------------------------------------------------------------------------
// 5 \u2014 Sentra RF anomaly classifier
// ---------------------------------------------------------------------------
const M5_SENTRA_ANOMALY: MilestonePack = {
slug: 'sentra-anomaly',
number: 5,
phase: '7\u201312',
title: 'Sentra RF anomaly classifier',
tagline: 'A twin-vs-reality delta classifier (rogue cell, jammer, IMSI catcher). Promoted via Mirror Eval. Findings flow into the Sentra Approval Queue.',
doctrine:
'Use the twin as the predicted baseline. Compare against owner-licensed spectrum captures. Anything the twin says cannot exist becomes a finding for Sentra to triage. Three classes at v1: rogue base station, broadband jamming, IMSI catcher.',
kpis: [
{ label: 'CLASSES', value: '3', sub: 'rogue cell · jammer · IMSI catcher' },
{ label: 'DELTA METRIC', value: 'CIR L2', sub: 'per-tap distance' },
{ label: 'PROMOTION GATE', value: 'Mirror Eval', sub: 'bounded false-positive rate' },
{ label: 'EVIDENCE PATH', value: 'Cerberus', sub: 'append-only ledger' },
],
deliverables: [
{
id: 'delta-engine',
name: 'Twin-vs-reality delta engine',
oneLine: 'Computes a per-tap complex-amplitude L2 distance between predicted CIR and observed CIR.',
detail: 'Observed CIRs come from owner-licensed spectrum captures only. Engine outputs a per-(time, location, frequency) delta tensor.',
module: 'A11oy Mirror Eval + Aerial Twin Engine',
},
{
id: 'classifier',
name: 'Three-class anomaly classifier',
oneLine: 'Rogue cell, broadband jamming, and IMSI catcher classes at v1.',
detail: 'Trained on synthetic adversarial CIRs generated in twin only. Classifier head is small and explainable; per-class scores are surfaced in the Sentra finding card.',
module: 'Sentra Risk Engine + Silver RL Planner',
},
{
id: 'promotion-gate',
name: 'Mirror Eval promotion gate',
oneLine: 'Classifier cannot ship to production without passing a frozen-eval false-positive bound.',
detail: 'Default v1 bound: false-positive rate < 1% on a frozen evaluation set of legitimate captures from each tenant.',
module: 'A11oy Mirror Eval',
},
{
id: 'approval-queue',
name: 'Approval Queue integration',
oneLine: 'Every finding lands in the Sentra Approval Queue with the twin baseline and the captured signal as evidence.',
detail: 'Operator can accept, dismiss with reason, or escalate. All actions are written to the Cerberus ledger.',
module: 'Sentra Approval Queue + Cerberus',
},
{
id: 'evidence-binding',
name: 'Cerberus evidence binding',
oneLine: 'Every finding carries the scene hash, ruleset, classifier version, capture-source attestation, and operator decision.',
detail: 'Evidence chain is append-only and externally attestable. Required for any cross-vertical promotion of the finding.',
module: 'Cerberus Evidence Vault',
},
],
oss: [
{
module: 'A11oy Differentiable Delta Path',
capability: 'End-to-end differentiable PHY blocks for the twin-vs-reality delta computation.',
detail: 'Lets the classifier head train jointly against twin and observed CIRs. No learned PHY weights ship in the runtime; only the typed graph.',
},
{
module: 'Lab Capture Pipeline',
capability: 'Owner-licensed SDR capture \u2192 flowgraph \u2192 framed CIR estimate, handed to Mirror Eval as a typed batch.',
detail: 'Runs lab-side behind a service boundary. Capture provenance is attested by Hephaestus before any batch enters Mirror Eval.',
},
{
module: 'A11oy xApp Candidate Registration',
capability: 'Classifier is packaged as a twin-trained xApp candidate with manifest, lifecycle hooks, and policy slots.',
detail: 'At this milestone the classifier stops at a Sentra finding. Promotion to a real RIC is the milestone-7 deliverable.',
},
],
guardrails: [
{ layer: 'Captures', control: 'Real-world captures must be owner-licensed or owner-owned. No third-party spectrum scraping.', enforcedBy: 'A11oy ingestion gate + Hephaestus capture attestation.' },
{ layer: 'Sandbox', control: 'All adversarial training runs in twin only. No live emission from any classifier path.', enforcedBy: 'Sentra capability compartment.' },
{ layer: 'Decision', control: 'Findings are advisory until a human operator approves. No autonomous take-down.', enforcedBy: 'Sentra Approval Queue + Constitution rule.' },
],
related: ['sionna-eval', 'ric-binding', 'attestation-soc2'],
};
// ---------------------------------------------------------------------------
// 6 \u2014 Federated RF episode ledger v1
// ---------------------------------------------------------------------------
const M6_FEDERATED_LEDGER: MilestonePack = {
slug: 'federated-ledger',
number: 6,
phase: '7\u201312',
title: 'Federated RF episode ledger v1',
tagline: 'Tenants opt in to share aggregated CIR statistics, never raw captures. Contributions earn Defender Credits.',
doctrine:
'A federated layer that pools channel statistics across consenting tenants without ever moving raw spectrum, scene geometry, or per-vessel / per-floor identifiers off-tenant. Contribution earns Defender Credits in the existing economy.',
kpis: [
{ label: 'POOL UNIT', value: 'CIR stats', sub: 'per-band per-environment' },
{ label: 'RAW EGRESS', value: '0 B', sub: 'never leaves tenant' },
{ label: 'CONSENT MODEL', value: 'opt-in', sub: 'lifecycle managed' },
{ label: 'INCENTIVE', value: 'Defender Credits', sub: 'per accepted contribution' },
],
deliverables: [
{
id: 'aggregator',
name: 'Per-tenant CIR statistics aggregator',
oneLine: 'On-tenant aggregator that emits descriptors (delay-spread distribution, K-factor, pathloss exponents) \u2014 never raw CIRs.',
detail: 'Runs inside the tenant\u2019s capability compartment. Output schema is fixed and auditable. Differential-privacy noise is added before emission for sensitive descriptors.',
module: 'A11oy Federation + Sentra Sandbox',
},
{
id: 'pooling-contract',
name: 'Cross-tenant pooling contract',
oneLine: 'A typed federation contract specifying which descriptors flow, at what cadence, with what privacy budget.',
detail: 'Versioned alongside the Constitution. Any change requires Constitution review and dual-key approval.',
module: 'A11oy Federation Contract + Constitution',
},
{
id: 'defender-credits',
name: 'Defender Credits accrual',
oneLine: 'Every accepted contribution earns Defender Credits in the existing economy.',
detail: 'Credit value scales with novelty (new environment class) and quality (passes the federation Mirror Eval). Spend paths reuse the existing Defender Credits surface.',
module: 'Defender Credits',
},
{
id: 'consent-lifecycle',
name: 'Tenant opt-in / opt-out lifecycle',
oneLine: 'Tenants can join, pause, and withdraw. Withdrawal removes the tenant from future pooling and is reversible.',
detail: 'Withdrawal does not retroactively unpool past contributions, since those are already aggregated. The audit trail makes this explicit.',
module: 'A11oy Federation + Tenant Admin',
},
{
id: 'partition',
name: 'Cerberus per-tenant partition',
oneLine: 'Raw CIRs and scene geometry are stored only in the tenant\u2019s Cerberus partition.',
detail: 'Federation pooling reads only the aggregator output, never the raw partition. Partition boundaries are enforced at the storage layer.',
module: 'Cerberus Evidence Vault',
},
],
oss: [
{
module: 'A11oy Statistical Descriptor Aggregator',
capability: 'Per-tenant descriptors of channel impulse responses (delay spread, K-factor, doppler) emitted with a fixed, auditable schema.',
detail: 'Differential-privacy noise applied before emission. Pool consumers see only the joint distribution, never per-tenant samples.',
},
{
module: 'A11oy Federation Contract',
capability: 'Typed, versioned, signed governance object describing what flows, at what cadence, with what privacy budget.',
detail: 'Contract version is committed to Cerberus before activation. Any change requires Constitution review and dual-key approval.',
},
{
module: 'A11oy Pooling Trainer',
capability: 'Pool consumers train locally with the pooled distribution as a prior.',
detail: 'No gradients are federated and no raw data crosses tenant boundaries; only the smaller, less reversible descriptor distribution is shared.',
},
],
guardrails: [
{ layer: 'Egress', control: 'No raw CIR, no raw scene, no per-asset identifier ever leaves the tenant.', enforcedBy: 'A11oy federation ingress filter + Cerberus partition.' },
{ layer: 'Privacy', control: 'Differential-privacy noise budget per descriptor family; budget exhaustion blocks further contributions for the period.', enforcedBy: 'Aggregator policy + audit log.' },
{ layer: 'Consent', control: 'Tenant must opt in explicitly. Withdrawal is reversible going forward, never retroactive.', enforcedBy: 'Tenant admin + signed contract version.' },
{ layer: 'Incentive', control: 'Defender Credits are earned only for contributions that pass the federation Mirror Eval gate.', enforcedBy: 'Defender Credits gate.' },
],
related: ['sentra-anomaly', 'ric-binding', 'attestation-soc2'],
};
// ---------------------------------------------------------------------------
// 7 \u2014 O-RAN SC RIC binding
// ---------------------------------------------------------------------------
const M7_RIC_BINDING: MilestonePack = {
slug: 'ric-binding',
number: 7,
phase: '13\u201324',
title: 'O-RAN SC RIC binding',
tagline: 'Twin and real RAN expose the same E2 / A1 / O1 interface to A11oy-managed xApps. Promotion is twin \u2192 staging \u2192 prod with dual-key approval.',
doctrine:
'Wire the twin to the standard control plane. xApps trained in twin see the same E2 telemetry shape as production. Promotion is a gated lane: twin \u2192 staging \u2192 prod, dual-key approval, with a 24-hour staging soak.',
kpis: [
{ label: 'INTERFACES', value: '3', sub: 'E2 · A1 · O1' },
{ label: 'PROMOTION LANE', value: '3 stages', sub: 'twin \u2192 staging \u2192 prod' },
{ label: 'APPROVAL', value: 'dual-key', sub: 'platform + vertical owner' },
{ label: 'STAGING SOAK', value: '24h', sub: 'minimum' },
],
deliverables: [
{
id: 'e2-termination',
name: 'E2 termination point',
oneLine: 'Twin emits E2 telemetry indistinguishable from a production RAN to xApps.',
detail: 'Built on the O-RAN SC ric-plt termination pattern. Service models supported at v1: KPM (Key Performance Measurement), RC (RAN Control).',
module: 'A11oy RIC Adapter + Aerial Twin Engine',
},
{
id: 'a1-policy',
name: 'A1 policy receiver',
oneLine: 'Non-RT RIC policy can target the twin first, then promote to real RAN.',
detail: 'A1 policy types are versioned and signed. Constitution review required to register a new policy type.',
module: 'A11oy A1 Receiver + Constitution',
},
{
id: 'o1-management',
name: 'O1 management interface',
oneLine: 'Twin exposes the standard O1 management surface for configuration and FCAPS.',
detail: 'Read-only at v1: configuration is sourced from the A11oy capability registry rather than O1 NETCONF writes. O1 alarms feed the Sentra finding stream.',
module: 'A11oy O1 Adapter + Sentra',
},
{
id: 'xapp-registry',
name: 'Twin-trained xApp registry',
oneLine: 'Every twin-trained xApp is registered with manifest, training-data lineage, and Mirror Eval result.',
detail: 'Registry entries are append-only. Re-registration with the same name requires a Constitution review.',
module: 'A11oy Capability Registry + Cerberus',
},
{
id: 'promotion-lane',
name: 'Twin \u2192 staging \u2192 prod promotion lane',
oneLine: 'A typed lane with dual-key approval and a 24h staging soak before any production xApp activation.',
detail: 'Each transition emits a signed evidence record. A staging failure rolls back automatically; a prod failure pages the on-call and rolls back.',
module: 'A11oy Promotion Engine + Sentra Approval Queue',
},
],
oss: [
{
module: 'A11oy RIC Adapter',
capability: 'Near-RT RIC termination: E2 termination, subscription manager, xApp orchestration.',
detail: 'Subscriptions are managed by the A11oy capability registry so they are typed and approval-gated rather than free-form.',
},
{
module: 'A11oy xApp Template',
capability: 'xApp lifecycle hooks, RMR messaging, configuration loading, plus a Constitution-bound manifest.',
detail: 'Every xApp ships with a required Mirror Eval reference and a signed provenance footer before it can register.',
},
{
module: 'A11oy A1 Receiver',
capability: 'Typed A1 policy objects with lifecycle and conflict resolution.',
detail: 'Policies must register as typed capabilities. Conflicts defer to the Sentra Approval Queue rather than a silent override.',
},
{
module: 'A11oy Deployment Manager',
capability: 'Helm-based xApp packaging and lifecycle management.',
detail: 'Deployments are gated by the A11oy promotion lane. Helm charts are built reproducibly and committed to Cerberus before activation.',
},
],
guardrails: [
{ layer: 'Promotion', control: 'No xApp lands in production without dual-key approval and a 24h staging soak.', enforcedBy: 'A11oy promotion engine + Sentra Approval Queue.' },
{ layer: 'Configuration', control: 'O1 is read-only at v1; configuration writes flow through the A11oy capability registry instead.', enforcedBy: 'A11oy O1 adapter policy.' },
{ layer: 'Provenance', control: 'Every E2 subscription, A1 policy, and xApp deployment carries a signed provenance footer.', enforcedBy: 'Hephaestus + Cerberus.' },
],
related: ['sentra-anomaly', 'ai-ran'],
};
// ---------------------------------------------------------------------------
// 8 \u2014 AI-RAN inference path
// ---------------------------------------------------------------------------
const M8_AI_RAN: MilestonePack = {
slug: 'ai-ran',
number: 8,
phase: '13\u201324',
title: 'AI-RAN inference path',
tagline: 'Twin-trained ML blocks (beam prediction, channel estimation) served via a CUDA-accelerated runtime behind the connector firewall.',
doctrine:
'The first ML blocks promoted from twin to inference. Beam prediction and channel estimation at v1, both trained in twin, both compared A/B against the classical baseline. Runtime sits behind the Sentra connector firewall.',
kpis: [
{ label: 'ML BLOCKS', value: '2', sub: 'beam · channel-est' },
{ label: 'TRAINING SOURCE', value: 'twin only', sub: 'no production data' },
{ label: 'A/B BASELINE', value: 'classical', sub: 'always co-deployed' },
{ label: 'PROVENANCE', value: 'per batch', sub: 'manifest in Cerberus' },
],
deliverables: [
{
id: 'beam-predictor',
name: 'Beam predictor (twin-trained)',
oneLine: 'Predicts the best beam from sub-6 reference signals, trained against twin-derived ground truth.',
detail: 'Architecture: small ResNet over reference-signal magnitude, output is a beam-index distribution. Mirror Eval gate enforces a top-k accuracy floor against held-out twin scenes.',
module: 'A11oy Model Router + Aerial Twin Engine',
},
{
id: 'channel-estimator',
name: 'Channel estimator (twin-trained)',
oneLine: 'Replaces the classical least-squares estimator on a per-symbol basis where it beats classical in twin.',
detail: 'Output is the same complex CIR tensor as the classical block. Co-deployed with classical estimator; A/B selector decides per-frame.',
module: 'A11oy Model Router',
},
{
id: 'runtime',
name: 'Inference runtime sandbox',
oneLine: 'CUDA-accelerated inference in a Sentra capability compartment with pinned model artefacts.',
detail: 'Compartment has read-only access to the model store and write-only access to the inference-log sink. Model loading is gated by signature verification.',
module: 'Sentra Sandbox + A11oy Model Router',
},
{
id: 'firewall',
name: 'Connector-firewall path',
oneLine: 'All inference traffic flows through Sentra\u2019s connector firewall with per-block egress allowlists.',
detail: 'Beam predictor and channel estimator have no egress beyond the inference-log sink and the model-router callback.',
module: 'Sentra Connector Firewall',
},
{
id: 'provenance',
name: 'Per-batch provenance manifest',
oneLine: 'Every inference batch carries a manifest: model version, training scene set, ruleset, runtime version.',
detail: 'Manifest is signed and committed to Cerberus. Required for any cross-vertical promotion of an inference result.',
module: 'Hephaestus + Cerberus',
},
],
oss: [
{
module: 'A11oy ML PHY Block Contracts',
capability: 'Tensor-layout contracts for channel estimator, MIMO detector, and OFDM resource grid that match the twin\u2019s output.',
detail: 'Models trained against twin CIRs are drop-in. Runtime is hardened and sandboxed; no notebook-grade execution.',
},
{
module: 'A11oy Inference Runtime',
capability: 'CUDA-accelerated PHY runtime with classical baseline + ML block + A/B selector co-deployed in every slot.',
detail: 'Runtime sits behind the Sentra connector firewall. ML block can be disabled in one switch without taking the slot offline.',
},
{
module: 'A11oy Classical Baseline',
capability: 'Classical channel estimation and MIMO detection blocks served as the always-on A/B reference.',
detail: 'Baseline is never disabled. The A/B selector defers to classical on any twin-vs-prod drift detected by Mirror Eval.',
},
],
guardrails: [
{ layer: 'Training data', control: 'Models are trained on twin-derived data only at v1. No production data ingestion.', enforcedBy: 'A11oy model registry policy.' },
{ layer: 'A/B safety', control: 'Classical baseline is always co-deployed. ML block can be disabled in one switch.', enforcedBy: 'A11oy Model Router.' },
{ layer: 'Egress', control: 'Inference compartment has no network egress beyond the log sink and router callback.', enforcedBy: 'Sentra connector firewall.' },
{ layer: 'Provenance', control: 'Every batch carries a signed manifest covering model + training set + ruleset + runtime.', enforcedBy: 'Hephaestus + Cerberus.' },
],
related: ['ric-binding', 'attestation-soc2'],
};
// ---------------------------------------------------------------------------
// 9 \u2014 Coverage attestation as SOC2 artefact
// ---------------------------------------------------------------------------
const M9_ATTESTATION_SOC2: MilestonePack = {
slug: 'attestation-soc2',
number: 9,
phase: '13\u201324',
title: 'Coverage attestation as SOC2 artefact',
tagline: 'Signed coverage attestations cross-referenced into the SOC 2 Type II control surface as evidence of connectivity controls.',
doctrine:
'Turn the per-vessel and per-property attestations into recurring SOC 2 evidence. CC6 (logical access) and CC7 (system operations) families benefit. Attestations are versioned, signed, and refreshed on a schedule the auditor can rely on.',
kpis: [
{ label: 'CONTROL FAMILIES', value: '2', sub: 'CC6 · CC7' },
{ label: 'ATTESTATION SIG', value: 'Cerberus', sub: 'externally verifiable' },
{ label: 'REFRESH', value: 'annual', sub: 'plus on material change' },
{ label: 'AUDIT EXPORT', value: 'JSONL+PDF', sub: 'machine + human' },
],
deliverables: [
{
id: 'control-mapping',
name: 'SOC 2 control mapping',
oneLine: 'Mapping table that ties each attestation field to a SOC 2 CC6 / CC7 control statement.',
detail: 'Versioned alongside the Constitution. Audited by the same review path as any policy change. Mapping diff appears in the auditor export.',
module: 'Sentra Compliance Engine + Constitution',
},
{
id: 'pdf-generator',
name: 'Per-vertical signed PDF generator',
oneLine: 'One generator with vertical-specific cover sheets (Vessels berth, Terra parcel).',
detail: 'Built on the existing investor-doc PDF renderer pattern. Cover sheet, evidence block, signature chain, scene + ruleset hash.',
module: 'Cerberus + PDF renderer',
},
{
id: 'evidence-binding',
name: 'Cerberus evidence vault binding',
oneLine: 'Every attestation is committed to the Cerberus append-only ledger with a stable evidence ID.',
detail: 'Auditor can dereference any evidence ID to retrieve the signed bundle (PDF + JSON + provenance footer).',
module: 'Cerberus Evidence Vault',
},
{
id: 'audit-export',
name: 'Audit trail export',
oneLine: 'JSONL + PDF export for the auditor: every attestation, every approval, every revocation.',
detail: 'Export is reproducible from Cerberus and is itself signed. Auditor receives the export plus the signature.',
module: 'Sentra Compliance Engine',
},
{
id: 'recertification',
name: 'Annual recertification scheduler',
oneLine: 'Automated reminders + a forced refresh on material change (scene, ruleset, or vertical scope).',
detail: 'Recertification job runs on the existing durable-job runner. Failure to recertify within the grace window flags the attestation as expired in Cerberus.',
module: 'A11oy Durable Jobs + Cerberus',
},
],
oss: [
{
module: 'Cerberus Config-as-Data',
capability: 'Attestations are typed, versioned, signed configuration objects with a deterministic rollback path.',
detail: 'Each version is signed and committed before publication. Rollback is a vault operation, not a redeploy.',
},
{
module: 'Aerial Twin Reproducibility Contract',
capability: 'Same scene + ruleset + seed yields the same output, every time, on demand.',
detail: 'The auditor can request a re-derivation of any attestation from its inputs. Re-derivation is the evidentiary backbone of the SOC 2 mapping.',
},
],
guardrails: [
{ layer: 'Provenance', control: 'Every attestation carries a full provenance footer: scene + ruleset + engine + ML versions + operator identity.', enforcedBy: 'Hephaestus + Cerberus.' },
{ layer: 'Reproducibility', control: 'Auditor can request re-derivation from the inputs at any time.', enforcedBy: 'A11oy Mirror Eval + Aerial Twin Engine.' },
{ layer: 'Lifecycle', control: 'Attestations expire and must be recertified annually or on material change.', enforcedBy: 'Durable-job recertification + Cerberus expiry gate.' },
],
related: ['vessels-port', 'terra-building', 'sentra-anomaly'],
};
// ---------------------------------------------------------------------------
// REGISTRY
// ---------------------------------------------------------------------------
export const AERIAL_TWIN_MILESTONES: readonly MilestonePack[] = [
M2_SIONNA_EVAL,
M3_VESSELS_PORT,
M4_TERRA_BUILDING,
M5_SENTRA_ANOMALY,
M6_FEDERATED_LEDGER,
M7_RIC_BINDING,
M8_AI_RAN,
M9_ATTESTATION_SOC2,
];
export function getMilestonePack(slug: string): MilestonePack | undefined {
return AERIAL_TWIN_MILESTONES.find((m) => m.slug === slug);
}
|