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关于快上升时间高峰值功率电磁脉冲人体暴露标准的考量因素。

Considerations for human exposure standards for fast-rise-time high-peak-power electromagnetic pulses.

作者信息

Merritt J H, Kiel J L, Hurt W D

机构信息

Radiofrequency Radiation Division, Armstrong Laboratory, Brooks Air Force Base, TX 78235, USA.

出版信息

Aviat Space Environ Med. 1995 Jun;66(6):586-9.

PMID:7646411
Abstract

Development of new emitter systems capable of producing high-peak-power electromagnetic pulses with very fast rise times and narrow pulse widths is continuing. Such directed energy weapons systems will be used in the future to defeat electronically vulnerable targets. Human exposures to these pulses can be expected during testing and operations. Development of these technologies for radar and communications purposes has the potential for wider environmental exposure, as well. Current IEEE C95.1-1991 human exposure guidelines do not specifically address these types of pulses, though limits are stated for pulsed emissions. The process for developing standards includes an evaluation of the relevant bioeffects data base. A recommendation has been made that human exposure to ultrashort electromagnetic pulses that engender electromagnetic transients, called precursor waves, should be avoided. Studies that purport to show the potential for tissue damage induced by such pulses were described. The studies cited in support of the recommendation were not relevant to the issues of tissue damage by propagated pulses. A number of investigations are cited in this review that directly address the biological effects of electromagnetic pulses. These studies have not shown evidence of tissue damage as a result of exposure to high-peak-power pulsed microwaves. It is our opinion that the current guidelines are sufficiently protective for human exposure to these pulses.

摘要

能够产生具有极快上升时间和窄脉冲宽度的高峰值功率电磁脉冲的新型发射器系统的研发工作仍在继续。这类定向能武器系统未来将用于击败电子易损目标。在测试和操作过程中,预计会有人员接触到这些脉冲。用于雷达和通信目的的这些技术的发展也有可能导致更广泛的环境暴露。尽管当前的IEEE C95.1 - 1991人体暴露指南对脉冲发射规定了限值,但并未专门针对这类脉冲。制定标准的过程包括对相关生物效应数据库的评估。有人建议应避免人体暴露于会产生电磁瞬变(称为前驱波)的超短电磁脉冲。文中描述了一些声称显示此类脉冲会导致组织损伤可能性的研究。支持该建议所引用的研究与传播脉冲造成的组织损伤问题无关。本综述引用了一些直接探讨电磁脉冲生物效应的调查。这些研究并未表明有证据显示暴露于高峰值功率脉冲微波会导致组织损伤。我们认为,当前的指南对于人体暴露于这些脉冲具有足够的保护作用。

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