ITS Roadway Equipment --> Multi-Access Edge Computing:
vehicle signage local data

This flow may also be implemented by ITS Roadway Equipment --> Connected Vehicle Roadside Equipment: vehicle signage local data

Definitions

vehicle signage local data (Information Flow): Information provided by adjacent field equipment to support in-vehicle signing of dynamic information that is currently being displayed to passing drivers. This includes the dynamic information (e.g., local traffic and road conditions, work zone information, lane restrictions, detours, closures, advisories, parking availability, etc.) and control parameters that identify the desired timing, duration, and priority of the signage data.

ITS Roadway Equipment (Source Physical Object): 'ITS Roadway Equipment' represents the ITS equipment that is distributed on and along the roadway that monitors and controls traffic and monitors and manages the roadway. This physical object includes traffic detectors, environmental sensors, traffic signals, highway advisory radios, dynamic message signs, CCTV cameras and video image processing systems, grade crossing warning systems, and ramp metering systems. Lane management systems and barrier systems that control access to transportation infrastructure such as roadways, bridges and tunnels are also included. This object also provides environmental monitoring including sensors that measure road conditions, surface weather, and vehicle emissions. Work zone systems including work zone surveillance, traffic control, driver warning, and work crew safety systems are also included.

Multi-Access Edge Computing (Destination Physical Object): 'Multi-Access Edge Computing' ((MEC) previously known as mobile edge computing) represents computing devices that operate and are managed like a cloud server, but are deployed at the edge of a network (typically a cellular network, but it could be any network). While not in strict proximity to the transportation network, these systems do benefit from vastly decreased distances to the roadway compared to central systems, and so can provide lower latency than strictly backoffice systems

Included In

This Triple is in the following Service Packages:

This triple is associated with the following Functional Objects:

This Triple is described by the following Functional View Data Flows:

This Triple has the following triple relationships:

Communication Solutions

Solutions are sorted in ascending Gap Severity order. The Gap Severity is the parenthetical number at the end of the solution.

Selected Solution

(None-Data) - Eclipse Zenoh over Wireless

Solution Description

This solution is used within Canada and the U.S.. It combines standards associated with (None-Data) with those for Eclipse Zenoh over Wireless. The (None-Data) standards include an unspecified set of standards at the upper layers. The Eclipse Zenoh over Wireless standards include lower-layer standards that support data distribution of specific types of data over wireless links.

ITS Application Entity
Mind the gapMind the gap

Development needed
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Mgmt
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Eclipse Zenoh
Facilities
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Eclipse Zenoh
Security

IETF RFC 8446
TransNet

IP Alternatives
IETF RFC 9293
Access
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Note that some layers might have alternatives, in which case all of the gap icons associated with every alternative may be shown on the diagram, but the solution severity calculations (and resulting ordering of solutions) includes only the issues associated with the default (i.e., best, least severe) alternative.

Characteristics

CharacteristicValue
Time Context Recent
Spatial Context Adjacent
Acknowledgement False
CardinalityUnicast
InitiatorDestination
AuthenticableTrue
EncryptFalse


InteroperabilityDescription
LocalIn cases where an interface is normally encapsulated by a single stakeholder, interoperability is still desirable, but the motive is vendor independence and the efficiencies and choices that an open standards-based interface provides.

Security

Information Flow Security
  Confidentiality Integrity Availability
Rating Moderate Moderate Moderate
Basis This data is intentionally transmitted to everyone via a broadcast. It is meant to augment other signage data, and by definition is meant to be shared with everyone; however, all communications between field infrastructure should be protected from viewing to prevent attackers from analyzing traffic and developing attack methods. These signs are meant to augment other visual cues to the driver. They should be accurate, but any inaccuracies should be corrected for by other means. These notifications are helpful to a driver, but if the driver does not receive this notification immediately, there should still be other visual cues.


Security CharacteristicsValue
AuthenticableTrue
Encrypt False