直流,交流和混合电场的人体检测阈值:双盲研究。

Michael Kursawe, Dominik Stunder, Thomas Krampert, Andrea Kaifie, Sarah Drießen, Thomas Kraus, Kathrin Jankowiak
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引用次数: 4

摘要

背景:在电力能源系统的持续转型过程中,输电走廊经常升级为更高的电压和其他技术,导致人类接触的另一种质量。该研究旨在确定人类对直流电场(DC)、交流电场(AC)和混合电场(各种DC;持续的交流)。方法:在一个高度专业化的全身暴露实验室,采用双盲实验设置,共有203名参与者暴露于直流、交流和混合电场(EFs)下。此外,参与者在部分直流和混合会议中暴露于离子流。为了研究环境的影响,两个亚组在EF感知过程中改变了相对湿度。分别采用信号检测理论和基于单区间调整矩阵的自适应阶梯法评估个体灵敏度和检测阈值。结果:与直流或交流的单一EF呈现相比,混合EF的检测阈值较低,离子电流暴露增强了EF感知。高相对湿度有利于直流电场的感知,而低相对湿度则增强了交流电场的感知。结论:通过系统调查人类对直流、交流和混合电磁场的感知,提供了检测阈值,可以通过确定极限值来帮助改进能量传输系统的建设过程,防止不必要的感官感知。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Human detection thresholds of DC, AC, and hybrid electric fields: a double-blind study.

Human detection thresholds of DC, AC, and hybrid electric fields: a double-blind study.

Human detection thresholds of DC, AC, and hybrid electric fields: a double-blind study.

Human detection thresholds of DC, AC, and hybrid electric fields: a double-blind study.

Background: In the course of the ongoing transition of electric energy systems, transmission corridors are often upgraded to higher voltages and other technologies leading to another quality of human exposure. The study aims to determine human detection thresholds for direct current (DC), alternating current (AC), and hybrid electric fields (various DC; constant AC).

Methods: A total of 203 participants were exposed to DC, AC, and hybrid electric fields (EFs) in a highly specialized whole-body exposure laboratory using a double-blind experimental setting. Additionally, the participants were exposed to ion currents in part of the DC and hybrid sessions. To investigate environmental influences, relative humidity was changed in two subgroups during EF perception. Methods derived from the signal detection theory and the adaptive staircase procedure based on the single interval adjustment matrix were used to assess individual sensitivity and detection thresholds, respectively.

Results: The results indicated that detection thresholds of hybrid EF were lower compared to single EF presentation of DC or AC. Ion current exposure enhanced EF perception. High relative humidity facilitated DC EF perception, whereas low relative humidity reinforced the perception of AC EFs.

Conclusions: With this systematic investigation of human perception of DC, AC, and hybrid EFs, detection thresholds were provided, which can help improve the construction processes of energy transmission systems and the prevention of unwanted sensory perception by contributing to the determination of limit values.

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