Rapid analysis of hostile vehicle attack vectors using geospatial modelling.

Rapid analysis of hostile vehicle attack vectors using geospatial modelling.

The Automated Hostile Vehicle Vector Analysis (AHVVA) is a proprietary system that uses geospatial data to model potential hostile vehicle attack vectors anywhere in the world. By selecting a location on a map, AHVVA analyses vehicle approach routes, access paths, and impact zones, simulating vehicle dynamics such as speed and momentum to produce a quantified risk rating for each vector. The tool supports hostile vehicle mitigation and protective design by identifying high-risk approach routes and areas requiring strengthened barriers or protective measures.

The Automated Hostile Vehicle Vector Analysis (AHVVA) is a proprietary system that uses geospatial data to model potential hostile vehicle attack vectors anywhere in the world. By selecting a location on a map, AHVVA analyses vehicle approach routes, access paths, and impact zones, simulating vehicle dynamics such as speed and momentum to produce a quantified risk rating for each vector. The tool supports hostile vehicle mitigation and protective design by identifying high-risk approach routes and areas requiring strengthened barriers or protective measures.

Process

Process

Process

How Does it Work?

Step 1

Collect

Collect

Users designate areas for assessment using a simple drag-and-drop map interface. Users can choose from a variety of tools to customise the analysis to their needs and different scenarios.

Users designate areas for assessment using a simple drag-and-drop map interface. Users can choose from a variety of tools to customise the analysis to their needs and different scenarios.

Step 2

Analyse

Analyse

Geographical data and information about the surrounding area is analysed and algorithms identify possible vectors and perform physics calculations.

Geographical data and information about the surrounding area is analysed and algorithms identify possible vectors and perform physics calculations.

Step 3

Deliver

Deliver

The outcomes of the analysis delivered in an interactive web map which users can navigate around, and can also be printed into a detailed report document.

The outcomes of the analysis delivered in an interactive web map which users can navigate around, and can also be printed into a detailed report document.

Why Use AHVVA

Benefits

Benefits

Benefits

Data-Driven & Scientific

Data-Driven & Scientific

Applying geospatial data to model vehicle movement

Applying geospatial data to model vehicle movement

AHVVA uses mapping and spatial data to identify access routes and model vehicle movement around a defined target area. It also uses geographical data to analyse the surrounding environment, including nearby roads, paths, terrain, and building types, to provide a detailed understanding of potential vehicle approaches. It calculates speed, mass, and kinetic energy along each vector to quantify the potential impact of a hostile vehicle and determine relative risk levels.

AHVVA uses mapping and spatial data to identify access routes and model vehicle movement around a defined target area. It also uses geographical data to analyse the surrounding environment, including nearby roads, paths, terrain, and building types, to provide a detailed understanding of potential vehicle approaches. It calculates speed, mass, and kinetic energy along each vector to quantify the potential impact of a hostile vehicle and determine relative risk levels.

Geospatial Data

Geospatial Data

Vehicle Dynamics

Vehicle Dynamics

VSB Effectiveness

VSB Effectiveness

Automated Analysis

Automated Analysis

Automate hostile vehicle assessments

Automate hostile vehicle assessments

AHVVA automates the identification and analysis of potential vehicle approach routes. By selecting a target location on a map, users can instantly model vehicle paths, calculate impact dynamics, and generate complete threat assessments - removing the need for manual inspection or calculation.

AHVVA automates the identification and analysis of potential vehicle approach routes. By selecting a target location on a map, users can instantly model vehicle paths, calculate impact dynamics, and generate complete threat assessments - removing the need for manual inspection or calculation.

Vehicle Path Modelling

Vehicle Path Modelling

Automated Threat Analysis

Automated Threat Analysis

Fast Report Generation

Fast Report Generation

Generate complete reports in minutes

Generate complete reports in minutes

AHVVA produces a detailed report containing all analytical results and visual outputs with a single click. Reports include assessed vectors, vehicle data, and relative risk levels, allowing users to deliver validated findings immediately after analysis.

AHVVA produces a detailed report containing all analytical results and visual outputs with a single click. Reports include assessed vectors, vehicle data, and relative risk levels, allowing users to deliver validated findings immediately after analysis.

Automated Reporting

Automated Reporting

Risk Summaries

Risk Summaries

Visual Outputs

Visual Outputs

Assessment of Barriers

Assessment of Barriers

Assess, verify, and evidence VSB effectiveness

Assess, verify, and evidence VSB effectiveness

Whether you are identifying which vehicle safety barriers (VSBs) to install or validating the effectiveness of those already in place, AHVVA provides a data-driven way to evidence protection. It compares each barrier type against the selected vehicle types and pathways to the point of impact, helping you determine which barriers are effective, ineffective, or need review.

Whether you are identifying which vehicle safety barriers (VSBs) to install or validating the effectiveness of those already in place, AHVVA provides a data-driven way to evidence protection. It compares each barrier type against the selected vehicle types and pathways to the point of impact, helping you determine which barriers are effective, ineffective, or need review.

PAS 68 & ISO 22343

PAS 68 & ISO 22343

VSB Validation

VSB Validation

Public Safety Approvals

Public Safety Approvals

FAQs

FAQs

FAQs

We’ve Got the Answers You’re Looking For

Quick answers to your AHVVA questions.

Quick answers to your AHVVA questions.

What is AHVVA?
How does AHVVA work?
Who uses AHVVA?
How are the results delivered?
Does AHVVA replace analysis by an engineer?
What vehicle safety barriers (VSBs) does AHVVA use, and can they be changed?
What is AHVVA?
How does AHVVA work?
Who uses AHVVA?
How are the results delivered?
Does AHVVA replace analysis by an engineer?
What vehicle safety barriers (VSBs) does AHVVA use, and can they be changed?

What is AHVVA?

How does AHVVA work?

Who uses AHVVA?

How are the results delivered?

Does AHVVA replace analysis by an engineer?

What vehicle safety barriers (VSBs) does AHVVA use, and can they be changed?

Request a demo

See how AHVVA transforms complex vehicle threat assessments into a fast, automated, and data-driven process. Replace time-consuming manual analysis with scalable, consistent, and objective results.

See how AHVVA transforms complex vehicle threat assessments into a fast, automated, and data-driven process. Replace time-consuming manual analysis with scalable, consistent, and objective results.