音響信号が自動運転車と歩行者のコミュニケーションを支援(Audio Tones Can Help Automated Vehicles Communicate with Pedestrians)

2026-09-09 バージニア工科大学(Virginia Tech)

バージニア工科大学交通研究所(VTTI)とZooxは、自動運転車が歩行者に車両の意図を音で伝える方法を研究した。40人の参加者を対象に、横断歩道と無信号地点での横断を模した計360回の実験を行い、「停止・接近中」を示す警告音と「停止して待機中」を示す待機音の効果を検証した。警告音は、特に道路途中の横断(jaywalking)で、歩行者が横断を断念する判断を促す効果があり、従来のクラクションと同程度の有効性を示しながら、より好意的に受け止められた。一方、待機音が安全な横断を促す効果は限定的だった。自動運転車では運転者とのアイコンタクトや身振りによる意思疎通ができないため、音響による外部ヒューマン・マシン・インターフェース(eHMI)は、歩行者の安全性を高める新たな手段となる可能性が示された。

音響信号が自動運転車と歩行者のコミュニケーションを支援(Audio Tones Can Help Automated Vehicles Communicate with Pedestrians)
Zoox team member Daniel Edillor demonstrates a crosswalk test scenario designed to measure participant response times to audio tones played by the approaching test vehicle to signal it will yield. Photo by Erem Memisyazici for Virginia Tech.

<関連情報>

レベル4自動運転システムと歩行者の相互作用: 新しい聴覚型外部ヒューマン・マシン・インターフェースの評価 PEDESTRIAN INTERACTIONS WITH LEVEL 4 AUTOMATED DRIVING SYSTEMS:  EVALUATION OF A NOVEL AUDITORY EXTERNAL HUMAN MACHINE INTERFACE

Gabrial T. Anderson, Srinath Sibi, Sadie Cooke, Jeremy Yang, Lowell Pickett, Ellen Xing, Kyle Evans, Jasmine Kim, Huadong Wang, Rossitza Kotelova, Rafael Patrick, Tanner Upthegrove, Stephen A. Ridella,  Luke Neurauter, & Sheila G. Klauer

ABSTRACT

With the advent of SAE Level 4 Automated Driving Systems (ADS) there is no longer a human driver to provide supplemental cues to pedestrians. To replicate this driver-to-pedestrian communication, ADSs may need additional  external methods of communication to aid pedestrians and other road users with understanding and anticipating vehicle actions. The current study examined the effect of novel sounds on pedestrian behavior. Forty participants were balanced across gender and vision status (i.e., 20 low-vision/visually impaired and 20 normal sighted participants). Participants experienced two scenarios: (1) a jaywalking scenario and (2) a pedestrian crosswalk scenario. In each scenario, an external speaker on the automated vehicle played  non-speech-based, auditory sounds to communicate with participants. Participants provided objective crossing decisions and subjective ratings about the sounds they experienced. For the jaywalking scenario, time to not cross (TTNC; i.e., time to decide “I will not cross the road”; faster is better) showed that the effect of sound was significant as compared  to the baseline vehicle sound. Further, all test sounds resulted in similar TTNC metrics as the horn sound. This suggests that the test sounds were as effective as the horn sound in influencing TTNC for jaywalking scenarios. For the pedestrian crosswalk, results suggested that  sound did not influence crossing decisions. This suggests that for pedestrian-ADS interactions at crosswalks, repeated sound exposure may be needed for learning what a sound is communicating or that additional external communication may not be as necessary above that of the overall motion of the vehicle.

0108交通物流機械及び建設機械
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