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    "story_id": "mp-2026-09-02-017",
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    "position": 19,
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    "section": "infrastructure",
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    "headline": "Five Percent of the Bytes Could Preserve the Fleet View",
    "slug": "five-percent-of-the-bytes-could-preserve-the-fleet-view",
    "dek": "A proposed drone context plane changes what peers compute, share and fuse as mission conditions move.",
    "summary": "A proposed drone context plane changes what peers compute, share and fuse as mission conditions move.",
    "body_text": "On UAV3D, mission-aware exchange matched full-sharing accuracy while using 5% to 10% of the bytes; choosing the wrong peer policy lost as much as 7.7 average precision. A ROS 2 prototype publishes descriptors no larger than one kilobyte at 10 hertz and reportedly uses about 0.01% of data-plane bandwidth. These measurements come from the evaluated checkpoint and prototype.",
    "why_it_matters": "A proposed drone context plane changes what peers compute, share and fuse as mission conditions move.",
    "limitations": [],
    "importance": 7,
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    "modified_at": "2026-09-02T09:00:00.000-04:00",
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    "tags": [
      "drone fleets",
      "cooperative perception",
      "bandwidth"
    ],
    "image_url": null,
    "corrections": []
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  "sources": [
    {
      "source_id": "source-2026-09-02-019",
      "title": "arXiv preprint 2609.00659",
      "publisher": "arXiv",
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  "publisher": {
    "name": "The Machine Press",
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    "description": "A daily newspaper for the age of artificial intelligence."
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  "cite_this_report": {
    "title": "Five Percent of the Bytes Could Preserve the Fleet View",
    "publisher": "The Machine Press",
    "published_at": "2026-09-02T09:00:00.000-04:00",
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