Document identifies open questions regarding MRC definition, risk assessment, feature deactivation, and post-MRC obligations. Discusses reasons for MRC including collisions, faults, remote termination, ODD exits, and fallback user transition failures. Addresses post-MRC reporting and data recording under DSSAD and ISMR. Examines feature deactivation following MRC and ODD exit scenarios, with three possible solutions for ADSF-2 post-ODD exit recording.
Document presents initial considerations for approving Automated Driving Systems as Separate Technical Units under UN R185. It explains how component and STU approvals divide responsibility between suppliers and vehicle manufacturers, provides examples from other regulations such as lighting, tyres, glazing, and fuel systems, and discusses potential benefits and challenges specific to UN R185 application. Benefits include independent audits and avoiding repeated assessments for different vehicle types. Challenges include difficulty splitting requirements, potential information withholding, and unclear legal responsibility. Proposes flexible approaches with shared Safety Management System requirements and validation in vehicles.
Proposal to clarify that the ADS must respond to user requests to deactivate, require multimodal signals at the start of and during deactivation procedures that continue until completion or termination, require escalation of warnings for system-initiated deactivations if the user is not re-engaging as expected, require gradual reduction of ADS control action during deactivation while maintaining safe vehicle control, allow the ADS to retake full control if the vehicle is not being controlled safely, terminate the deactivation procedure if the user is not suitably engaged and the time available to transition has expired, replace the requirement for contact with the steering wheel with being in a physical position to operate the driving controls, suspend non-driving related activities at the start of the deactivation procedure, and modify the DDT section to require fallback to an MRC instead of a deactivation procedure if there is insufficient time for transition.
Proposal to modify para. 4.2.2.3.8.1 to add a requirement that a user be in a physical position to operate the driving controls, to allow gaze to be directed to multiple driving task-relevant areas rather than a single area, and to add a requirement that the user have demonstrated an appropriate response to transition of control.
Analysis of terminology related to remote support for automated driving systems, grouping terms into four categories: remote termination, remote fleet management, remote assistance, and remote driving. Remote termination disables ADS features until rescinded. Remote fleet management involves observation without performing the dynamic driving task. Remote assistance provides information while ADS continues the dynamic driving task. Remote driving involves a remote user performing the dynamic driving task. Document proposes agreeing on categories, determining definitions, developing a supplement without new requirements, and potentially developing proposals for new requirements covering ADS performance when expected remote support is not provided and further consideration of remote assistance.
Document presents research on Safety Performance Indicators (SPIs) for continuous monitoring and evaluation of Automated Driving Systems safety. Leading indicators anticipate outcomes through metrics including time-based, distance-based, probability-based and deceleration-based measures; lagging indicators confirm outcomes after occurrence such as crashes and injuries. Analysis of 21 datasets identified SHRP2 as primary source with 1402 crashes and 5262 near-crashes. Performance evaluation using Distance Headway and Time-to-Collision achieved Area Under the Curve close to 0.9 distinguishing crashes and near-crashes from normal driving. Main bottleneck identified is data quality and scarcity of reliable safety event labels.
Results of investigations intended to validate the reduction of tolerances for the BioRID II setting & acceleration pulse in the test procedures by analyzing the variations of test results due to various tolerance levels.