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Electromagnetic Exposure Study on a Human Located inside the Car Using the Method of Auxiliary Sources

PAPER manual 2020 Engineering / measurement Effect: harm Evidence: Low

Abstract

Electromagnetic Exposure Study on a Human Located inside the Car Using the Method of Auxiliary Sources Jeladze VB, Nozadze TR, Tabatadze VA, et al. Electromagnetic Exposure Study on a Human Located inside the Car Using the Method of Auxiliary Sources J Communications Technology Electronics. 65(5): 457-464. May 2020. Abstract The article studies the effect of the electromagnetic field of wireless communications on a human inside a car in the frequency ranges of 450, 900, and 1800 MHz, corresponding to the operational range of police radios and modern mobile phones. A comparative analysis of the influence of the Earth's surface under the car is presented. The results of numerical calculations using the Method of Auxiliary Sources show the presence of resonance phenomena and a high reactive field inside the car, which leads to an undesirable increase in the level of absorbed energy in human tissues. Conclusions The Method of Auxiliary Sources was used to study the exposure of the electromagnetic field of a mobile phone's antenna on a human inside a car. The calculations took into account the effect of Earth's reflective surface under the car. The results showed that high-amplitude reactive fields inside the car can lead to a multiple increase in the SAR coefficient in human tissues compared to values obtained in the free space. It is recommended to reduce the duration of mobile phone calls inside a car. link.springer.com

AI evidence extraction

At a glance
Study type
Engineering / measurement
Effect direction
harm
Population
Human located inside a car (numerical model)
Sample size
Exposure
RF mobile phone · 900 MHz
Evidence strength
Low
Confidence: 74% · Peer-reviewed: yes

Main findings

Numerical calculations using the Method of Auxiliary Sources reported resonance phenomena and high reactive fields inside a car at 450, 900, and 1800 MHz. The study reports that these fields can lead to an undesirable increase in absorbed energy in human tissues and a multiple increase in SAR compared with free-space values, with the Earth's reflective surface under the car considered.

Outcomes measured

  • Specific absorption rate (SAR) in human tissues
  • Reactive field amplitude inside the car
  • Resonance phenomena inside the car

Limitations

  • Based on numerical calculations/modeling rather than direct measurements in humans
  • No quantitative SAR values or uncertainty ranges are provided in the abstract
  • Details of the human model, antenna configuration, and exposure conditions are not described in the abstract
  • Generalizability to real-world phone use inside cars is unclear from the abstract

Suggested hubs

  • cell-phones (0.9)
    Models exposure from a mobile phone antenna and discusses SAR changes during phone use inside a car.
  • occupational-exposure (0.35)
    Includes frequencies corresponding to police radios, which may relate to occupational radio use.
View raw extracted JSON
{
    "publication_year": 2020,
    "study_type": "engineering",
    "exposure": {
        "band": "RF",
        "source": "mobile phone",
        "frequency_mhz": 900,
        "sar_wkg": null,
        "duration": null
    },
    "population": "Human located inside a car (numerical model)",
    "sample_size": null,
    "outcomes": [
        "Specific absorption rate (SAR) in human tissues",
        "Reactive field amplitude inside the car",
        "Resonance phenomena inside the car"
    ],
    "main_findings": "Numerical calculations using the Method of Auxiliary Sources reported resonance phenomena and high reactive fields inside a car at 450, 900, and 1800 MHz. The study reports that these fields can lead to an undesirable increase in absorbed energy in human tissues and a multiple increase in SAR compared with free-space values, with the Earth's reflective surface under the car considered.",
    "effect_direction": "harm",
    "limitations": [
        "Based on numerical calculations/modeling rather than direct measurements in humans",
        "No quantitative SAR values or uncertainty ranges are provided in the abstract",
        "Details of the human model, antenna configuration, and exposure conditions are not described in the abstract",
        "Generalizability to real-world phone use inside cars is unclear from the abstract"
    ],
    "evidence_strength": "low",
    "confidence": 0.7399999999999999911182158029987476766109466552734375,
    "peer_reviewed_likely": "yes",
    "stance": "concern",
    "stance_confidence": 0.85999999999999998667732370449812151491641998291015625,
    "summary": "This engineering/modeling study used the Method of Auxiliary Sources to assess RF exposure for a human inside a car at 450, 900, and 1800 MHz. The numerical results report resonance and high reactive fields inside the car, which the authors state can increase absorbed energy and SAR in tissues compared with free space. The analysis also considered the influence of the Earth's reflective surface under the car.",
    "key_points": [
        "The study modeled RF fields inside a car at 450, 900, and 1800 MHz relevant to police radios and mobile phones.",
        "A comparative analysis considered the effect of the Earth's surface under the car on exposure.",
        "Numerical calculations reported resonance phenomena and high reactive fields inside the car.",
        "The authors report these conditions can cause an undesirable increase in absorbed energy in human tissues.",
        "The paper concludes SAR in tissues could be multiple times higher than in free space under the modeled conditions.",
        "The authors recommend reducing the duration of mobile phone calls inside a car."
    ],
    "categories": [
        "RF Exposure",
        "Dosimetry & SAR",
        "Computational Modeling",
        "Mobile Phones"
    ],
    "tags": [
        "Car Cabin",
        "Reactive Near-Field",
        "Resonance",
        "Specific Absorption Rate",
        "Numerical Simulation",
        "Method of Auxiliary Sources",
        "Earth Reflection",
        "Mobile Phone Antenna",
        "Police Radio Frequencies"
    ],
    "keywords": [
        "car",
        "wireless communications",
        "450 MHz",
        "900 MHz",
        "1800 MHz",
        "reactive field",
        "resonance",
        "SAR",
        "Method of Auxiliary Sources",
        "Earth surface reflection"
    ],
    "suggested_hubs": [
        {
            "slug": "cell-phones",
            "weight": 0.90000000000000002220446049250313080847263336181640625,
            "reason": "Models exposure from a mobile phone antenna and discusses SAR changes during phone use inside a car."
        },
        {
            "slug": "occupational-exposure",
            "weight": 0.34999999999999997779553950749686919152736663818359375,
            "reason": "Includes frequencies corresponding to police radios, which may relate to occupational radio use."
        }
    ],
    "social": {
        "tweet": "Modeling study (450/900/1800 MHz) reports resonance and high reactive RF fields inside a car that may increase tissue SAR vs free space, especially considering ground reflection.",
        "facebook": "A numerical modeling paper examined RF exposure for a person inside a car at 450, 900 and 1800 MHz. The authors report resonance/high reactive fields that could increase SAR compared with free space and recommend limiting call duration in a car.",
        "linkedin": "Engineering modeling study using the Method of Auxiliary Sources evaluated RF exposure for a person inside a car (450/900/1800 MHz). Results report resonance and elevated reactive fields that may increase SAR relative to free space, with ground reflection considered."
    }
}

AI can be wrong. Always verify against the paper.

AI-extracted fields are generated from the abstract/metadata and may be incomplete or incorrect. This content is for informational purposes only and is not medical advice.

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