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        "title": "Prove infrared imagery on the real materials and distances",
        "summary": "Infrared reflectance differs from visible appearance. Test clothing, plates, surfaces, weather, and target distances in the actual night mode before relying on the image.",
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        "potentially_affected": "Day/night cameras using integrated or separate infrared illuminators for perimeter, parking, entrance, indoor dark-area, or evidentiary coverage.",
        "dse_recommendation": "Commission IR coverage with representative subjects and surfaces across the full field, and document where monochrome appearance changes or glare limit the security task.",
        "primary_source": {
            "name": "IR in surveillance",
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        "content_html": "<p><strong>Bottom line:</strong> an object that appears dark, light, or distinctive to a person under visible light may look different in infrared. Night acceptance should use the materials, distances, weather, and camera modes that the actual investigation will face.</p>\n<h2>Source fact: IR appearance and illumination behavior differ from visible light</h2>\n<p>The Axis paper <a href=\"https://whitepapers.axis.com/en-us/ir-in-surveillance\" target=\"_blank\" rel=\"noopener noreferrer\">IR in surveillance</a> explains that a day/night camera removes its IR-cut filter and produces a monochrome image in IR mode. It notes that dark clothing can appear lighter under IR, discusses 850 nm and 940 nm illumination, and distinguishes integrated from standalone illumination. It also describes how a beam that does not match the camera view can create glare or leave inadequate coverage.</p>\n<p>These differences affect description and comparison. An operator should not infer visible color from a monochrome IR recording, and a daytime acceptance clip does not establish nighttime subject detail.</p>\n<h2>Source boundary and applicability</h2>\n<p>The paper is Axis guidance, not a guarantee for a camera, illuminator, material, or weather condition. Spectral response, filter behavior, wavelength, lens, exposure, subject reflectance, distance, moisture, insects, windows, domes, and nearby surfaces affect results. Thermal imaging is a different technology and should not be evaluated as reflected IR illumination.</p>\n<h2>Applicability questions</h2>\n<ul>\n<li>Is the task detection, recognition, identification, plate capture, or event reconstruction?</li>\n<li>Which visible colors or material differences might investigators incorrectly infer from the IR image?</li>\n<li>Does the illuminator beam match the full field at the required distances?</li>\n<li>Can walls, signs, plates, rain, fog, dust, or the camera cover cause backscatter or overexposure?</li>\n<li>Is the night-mode transition timely, stable, and recorded with the expected settings?</li>\n</ul>\n<h2>DSE recommendation: run an IR material-and-distance trial</h2>\n<p><em>The following steps are DSE recommendations based on the cited source.</em></p>\n<p>Select representative clothing, vehicles, markings, signs, badges, and other task materials without using sensitive personal data unnecessarily. Record controlled passes at the nearest, nominal, and farthest points, including field edges and reflective backgrounds. Test the darkest normal condition and representative adverse conditions where safe and practical.</p>\n<p>Retrieve the archive and score only facts supportable from the IR image. Document that monochrome tone is not verified visible color. Adjust illumination, beam, camera position, exposure, or add targeted coverage if glare or falloff defeats the task.</p>\n<p>Train operators and investigators on these documented limitations so incident notes distinguish an observed infrared tone from a verified color or material characteristic.</p>\n<h2>Verification and evidence</h2>\n<p>Keep the scene plan, camera and illuminator models, wavelength, settings, distances, ambient and weather conditions, material list, native clips, task scores, transition timing, and accepted limitations. Re-test after cleaning, seasonal change, landscaping, housing, illuminator, camera, or exposure changes.</p>\n<h2>Official references</h2>\n<ul>\n<li><a href=\"https://whitepapers.axis.com/en-us/ir-in-surveillance\" target=\"_blank\" rel=\"noopener noreferrer\">IR in surveillance</a> &#8211; Axis Communications</li>\n</ul>",
        "content_text": "Bottom line: an object that appears dark, light, or distinctive to a person under visible light may look different in infrared. Night acceptance should use the materials, distances, weather, and camera modes that the actual investigation will face.\nSource fact: IR appearance and illumination behavior differ from visible light\nThe Axis paper IR in surveillance explains that a day/night camera removes its IR-cut filter and produces a monochrome image in IR mode. It notes that dark clothing can appear lighter under IR, discusses 850 nm and 940 nm illumination, and distinguishes integrated from standalone illumination. It also describes how a beam that does not match the camera view can create glare or leave inadequate coverage.\nThese differences affect description and comparison. An operator should not infer visible color from a monochrome IR recording, and a daytime acceptance clip does not establish nighttime subject detail.\nSource boundary and applicability\nThe paper is Axis guidance, not a guarantee for a camera, illuminator, material, or weather condition. Spectral response, filter behavior, wavelength, lens, exposure, subject reflectance, distance, moisture, insects, windows, domes, and nearby surfaces affect results. Thermal imaging is a different technology and should not be evaluated as reflected IR illumination.\nApplicability questions\n\nIs the task detection, recognition, identification, plate capture, or event reconstruction?\nWhich visible colors or material differences might investigators incorrectly infer from the IR image?\nDoes the illuminator beam match the full field at the required distances?\nCan walls, signs, plates, rain, fog, dust, or the camera cover cause backscatter or overexposure?\nIs the night-mode transition timely, stable, and recorded with the expected settings?\n\nDSE recommendation: run an IR material-and-distance trial\nThe following steps are DSE recommendations based on the cited source.\nSelect representative clothing, vehicles, markings, signs, badges, and other task materials without using sensitive personal data unnecessarily. Record controlled passes at the nearest, nominal, and farthest points, including field edges and reflective backgrounds. Test the darkest normal condition and representative adverse conditions where safe and practical.\nRetrieve the archive and score only facts supportable from the IR image. Document that monochrome tone is not verified visible color. Adjust illumination, beam, camera position, exposure, or add targeted coverage if glare or falloff defeats the task.\nTrain operators and investigators on these documented limitations so incident notes distinguish an observed infrared tone from a verified color or material characteristic.\nVerification and evidence\nKeep the scene plan, camera and illuminator models, wavelength, settings, distances, ambient and weather conditions, material list, native clips, task scores, transition timing, and accepted limitations. Re-test after cleaning, seasonal change, landscaping, housing, illuminator, camera, or exposure changes.\nOfficial references\n\nIR in surveillance – Axis Communications",
        "content_markdown": "Bottom line: an object that appears dark, light, or distinctive to a person under visible light may look different in infrared. Night acceptance should use the materials, distances, weather, and camera modes that the actual investigation will face.\n\n## Source fact: IR appearance and illumination behavior differ from visible light\n\nThe Axis paper [IR in surveillance](https://whitepapers.axis.com/en-us/ir-in-surveillance) explains that a day/night camera removes its IR-cut filter and produces a monochrome image in IR mode. It notes that dark clothing can appear lighter under IR, discusses 850 nm and 940 nm illumination, and distinguishes integrated from standalone illumination. It also describes how a beam that does not match the camera view can create glare or leave inadequate coverage.\n\nThese differences affect description and comparison. An operator should not infer visible color from a monochrome IR recording, and a daytime acceptance clip does not establish nighttime subject detail.\n\n## Source boundary and applicability\n\nThe paper is Axis guidance, not a guarantee for a camera, illuminator, material, or weather condition. Spectral response, filter behavior, wavelength, lens, exposure, subject reflectance, distance, moisture, insects, windows, domes, and nearby surfaces affect results. Thermal imaging is a different technology and should not be evaluated as reflected IR illumination.\n\n## Applicability questions\n\n- Is the task detection, recognition, identification, plate capture, or event reconstruction?\n\n- Which visible colors or material differences might investigators incorrectly infer from the IR image?\n\n- Does the illuminator beam match the full field at the required distances?\n\n- Can walls, signs, plates, rain, fog, dust, or the camera cover cause backscatter or overexposure?\n\n- Is the night-mode transition timely, stable, and recorded with the expected settings?\n\n## DSE recommendation: run an IR material-and-distance trial\n\nThe following steps are DSE recommendations based on the cited source.\n\nSelect representative clothing, vehicles, markings, signs, badges, and other task materials without using sensitive personal data unnecessarily. Record controlled passes at the nearest, nominal, and farthest points, including field edges and reflective backgrounds. Test the darkest normal condition and representative adverse conditions where safe and practical.\n\nRetrieve the archive and score only facts supportable from the IR image. Document that monochrome tone is not verified visible color. Adjust illumination, beam, camera position, exposure, or add targeted coverage if glare or falloff defeats the task.\n\nTrain operators and investigators on these documented limitations so incident notes distinguish an observed infrared tone from a verified color or material characteristic.\n\n## Verification and evidence\n\nKeep the scene plan, camera and illuminator models, wavelength, settings, distances, ambient and weather conditions, material list, native clips, task scores, transition timing, and accepted limitations. Re-test after cleaning, seasonal change, landscaping, housing, illuminator, camera, or exposure changes.\n\n## Official references\n\n- [IR in surveillance](https://whitepapers.axis.com/en-us/ir-in-surveillance) – Axis Communications"
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                "description": "Infrared reflectance differs from visible appearance. Test clothing, plates, surfaces, weather, and target distances in the actual night mode before…",
                "abstract": "Infrared reflectance differs from visible appearance. Test clothing, plates, surfaces, weather, and target distances in the actual night mode before relying on the image.",
                "articleBody": "Bottom line: an object that appears dark, light, or distinctive to a person under visible light may look different in infrared. Night acceptance should use the materials, distances, weather, and camera modes that the actual investigation will face.\nSource fact: IR appearance and illumination behavior differ from visible light\nThe Axis paper IR in surveillance explains that a day/night camera removes its IR-cut filter and produces a monochrome image in IR mode. It notes that dark clothing can appear lighter under IR, discusses 850 nm and 940 nm illumination, and distinguishes integrated from standalone illumination. It also describes how a beam that does not match the camera view can create glare or leave inadequate coverage.\nThese differences affect description and comparison. An operator should not infer visible color from a monochrome IR recording, and a daytime acceptance clip does not establish nighttime subject detail.\nSource boundary and applicability\nThe paper is Axis guidance, not a guarantee for a camera, illuminator, material, or weather condition. Spectral response, filter behavior, wavelength, lens, exposure, subject reflectance, distance, moisture, insects, windows, domes, and nearby surfaces affect results. Thermal imaging is a different technology and should not be evaluated as reflected IR illumination.\nApplicability questions\n\nIs the task detection, recognition, identification, plate capture, or event reconstruction?\nWhich visible colors or material differences might investigators incorrectly infer from the IR image?\nDoes the illuminator beam match the full field at the required distances?\nCan walls, signs, plates, rain, fog, dust, or the camera cover cause backscatter or overexposure?\nIs the night-mode transition timely, stable, and recorded with the expected settings?\n\nDSE recommendation: run an IR material-and-distance trial\nThe following steps are DSE recommendations based on the cited source.\nSelect representative clothing, vehicles, markings, signs, badges, and other task materials without using sensitive personal data unnecessarily. Record controlled passes at the nearest, nominal, and farthest points, including field edges and reflective backgrounds. Test the darkest normal condition and representative adverse conditions where safe and practical.\nRetrieve the archive and score only facts supportable from the IR image. Document that monochrome tone is not verified visible color. Adjust illumination, beam, camera position, exposure, or add targeted coverage if glare or falloff defeats the task.\nTrain operators and investigators on these documented limitations so incident notes distinguish an observed infrared tone from a verified color or material characteristic.\nVerification and evidence\nKeep the scene plan, camera and illuminator models, wavelength, settings, distances, ambient and weather conditions, material list, native clips, task scores, transition timing, and accepted limitations. Re-test after cleaning, seasonal change, landscaping, housing, illuminator, camera, or exposure changes.\nOfficial references\n\nIR in surveillance – Axis Communications",
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