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迈向高级驾驶辅助系统中的无意识压力调节:一项系统综述。

Towards Mindless Stress Regulation in Advanced Driver Assistance Systems: A Systematic Review.

作者信息

Béquet Adolphe J, Hidalgo-Muñoz Antonio R, Jallais Christophe

机构信息

TS2-LESCOT, Univ Gustave Eiffel, IFSTTAR, Univ Lyon, Lyon, France.

CLLE, UMR 5263, CNRS, University of Toulouse Jean-Jaurès, Toulouse, France.

出版信息

Front Psychol. 2020 Dec 23;11:609124. doi: 10.3389/fpsyg.2020.609124. eCollection 2020.

Abstract

Stress can frequently occur in the driving context. Its cognitive effects can be deleterious and lead to uncomfortable or risky situations. While stress detection in this context is well developed, regulation using dedicated advanced driver-assistance systems (ADAS) is still emergent. This systematic review focuses on stress regulation strategies that can be qualified as "subtle" or "mindless": the technology employed to perform regulation does not interfere with an ongoing task. The review goal is 2-fold: establishing the state of the art on such technological implementation in the driving context and identifying complementary technologies relying on subtle regulation that could be applied in driving. A systematic review was conducted using search operators previously identified through a concept analysis. The patents and scientific studies selected provide an overview of actual and potential mindless technology implementations. These are then analyzed from a scientific perspective. A classification of results was performed according to the different stages of emotion regulation proposed by the Gross model. A total of 47 publications were retrieved, including 21 patents and 26 studies. Six of the studies investigated mindless stress regulation in the driving context. Patents implemented strategies mostly linked to attentional deployment, while studies tended to investigate response modulation strategies. This review allowed us to identify several ADAS relying on mindless computing technologies to reduce stress and better understand the underlying mechanisms allowing stress reduction. Further studies are necessary to better grasp the effect of mindless technologies on driving safety. However, we have established the feasibility of their implementation as ADAS and proposed directions for future research in this field.

摘要

压力在驾驶过程中经常会出现。其认知影响可能是有害的,并会导致不适或危险情况。虽然在这种情况下压力检测技术已经很成熟,但使用专用高级驾驶辅助系统(ADAS)进行调节仍处于起步阶段。本系统综述聚焦于可被视为“微妙”或“无意识”的压力调节策略:用于执行调节的技术不会干扰正在进行的任务。综述目标有两个:确立驾驶环境中此类技术实施的现状,并识别可应用于驾驶的依赖微妙调节的互补技术。通过使用先前通过概念分析确定的搜索运算符进行了系统综述。所选的专利和科学研究提供了实际和潜在的无意识技术实施情况的概述。然后从科学角度对其进行分析。根据格罗斯模型提出的情绪调节的不同阶段对结果进行了分类。总共检索到47篇出版物,包括21项专利和26项研究。其中六项研究调查了驾驶环境中的无意识压力调节。专利实施的策略大多与注意力部署有关,而研究倾向于调查反应调节策略。本综述使我们能够识别出几种依赖无意识计算技术来减轻压力的ADAS,并更好地理解允许减轻压力的潜在机制。有必要进行进一步研究以更好地掌握无意识技术对驾驶安全的影响。然而,我们已经确立了将其作为ADAS实施的可行性,并提出了该领域未来研究的方向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1bf2/7786307/52831d13b08b/fpsyg-11-609124-g0001.jpg

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