© Global Fishing Watch

How AIS and VMS Tracking Technologies Work: 10 Essential Questions Answered

Discover how these complementary systems work, where each excels and why using them together strengthens fisheries monitoring, control and surveillance.

Overview

Governments increasingly rely on vessel tracking for managing fisheries, enforcing regulations and strengthening maritime security. Effective vessel tracking must be integrated, transparent and interoperable. At Global Fishing Watch, we define this transparency as the act of making specific ocean and vessel data — along with the policies and decisions that surround them — available and accessible to those that need them. Because we are committed to promoting international cooperation and transparency around ocean data to advance a new era of ocean governance, we recognize that true integration requires understanding the strengths and limitations of the two primary technologies used today: automatic identification systems (AIS) and satellite-based vessel monitoring systems (VMS)

Although both systems provide vessel location data, they were designed to serve different purposes. AIS is an open broadcasting system that increases transparency by making vessel movements publicly visible. VMS is a secure and regulated system developed to support fisheries monitoring, control and surveillance (MCS) efforts. Over time, its application has expanded to support a broader range of fisheries management functions 

Used together — and alongside other remote sensing technologies such as satellite imagery and radar — AIS and VMS provide governments with a more complete picture of vessel activity at sea. The following questions explore how these complementary systems operate, where their capabilities differ and why integrated tracking is essential for modern fisheries management.

1. What is AIS?

AIS is a global vessel tracking system originally designed for maritime safety and collision avoidance. It automatically broadcasts a vessel’s identity, position, course and speed through an onboard transponder. The International Maritime Organization’s (IMO) International Convention for the Safety of Life at Sea requires certain classes of vessels to carry AIS.

How does AIS work?

From an onboard transponder, AIS continuously broadcasts vessel information that can be received by nearby vessels, shore-based receivers and low-Earth-orbit satellites, allowing vessel movements to be monitored over vast distances, including remote ocean regions. More than 120,000 fishing vessels from  dozens of flag States can be tracked through AIS transmissions at any given time. Although these vessels represent only a portion of the world’s fishing fleet, they account for up to 80 percent of fishing activity on the high seas. (1)

An onboard AIS transponder features a built-in display screen and keyboard for manual data entry.
© Wikimedia commons

What information does AIS transmit?

AIS messages contain two main categories of information: dynamic information, which changes continuously as a vessel navigates, and static or vessel-related information, which identifies the vessel and changes infrequently.

Dynamic: Real-time data that changes continuously as the vessel navigates

Static: Permanent or semi-permanent information that identifies the vessel and rarely changes

AIS messages contain two main categories of information: dynamic information, which changes continuously as a vessel navigates, and static or vessel-related information, which identifies the vessel and changes infrequently.

How is AIS used?

AIS messages contain two main categories of information: dynamic information, which changes continuously as a vessel navigates, and static or vessel-related information, which identifies the vessel and changes infrequently.

AIS is a valuable source of vessel activity information. Its analytical value is further enhanced when combined with complementary data sources, including VMS, satellite synthetic aperture radar (SAR), optical imagery and nighttime light detection, which improve coverage, strengthen verification and help identify vessels or activities that may not be visible in a single dataset.

Figure 1. High Seas Longline AIS Vessel Track

A visual representation of a high-seas longline vessel. The dense cluster of satellite AIS position reports — averaging an update every 12 minutes — provide a highly granular, transparent view of the vessel's movement and potential fishing patterns over hundreds of kilometers.
© 2026 Global Fishing Watch

2. What is VMS?

For more than 25 years, the Food and Agriculture Organization of the United Nations (FAO) has recognized VMS as a core component of fisheries MCS systems. VMS is a secure, automated satellite-based system used by fisheries authorities to monitor the location and movement of fishing vessels. 

How does VMS work?

Unlike AIS, which broadcasts information openly to anyone with a receiver, VMS transmits position reports through secure satellite communications. The data can be encrypted and is sent via authorized service providers to fisheries authorities and other relevant stakeholders.   

A VMS transponder installed on the vessel automatically sends information in data packages — electronic messages containing vessel position and other operational information. 

These messages typically include:

A type B VMS satellite terminal mounted on a Peruvian vessel. The unit is secured to the mounting bracket with an orange tamper-evident seal to ensure data integrity and compliance.
© SISESAT-PRODUCE-PERU

How is VMS used?

VMS data is used by fisheries authorities to support a wide range of fisheries management initiatives, other non-fisheries work and general oversight activities. 

Key applications of VMS data include:

Over time, these individual position reports combine to form vessel tracks. Platforms like the Global Fishing Watch map display this near-real-time data — including speed, heading and course — to reveal a vessel’s activity. Instead of analyzing isolated data points, users can visualize comprehensive movement patterns. As shown in Figure 2, these visual tracks form the foundation of VMS monitoring and enforcement applications.

Figure 2. High Seas Longline VMS Vessel Track

A visual representation of a high-seas longline vessel. The sequence of VMS position reports — averaging an update every 60 minutes — provides an encrypted view of the vessel's movement and potential fishing patterns over hundreds of kilometers.
© 2026 Global Fishing Watch

3. How do regulations govern the use of AIS on fishing vessels?

There is no universal requirement for fishing vessels to carry AIS. Instead, the use of AIS on fishing vessels may be regulated through conservation and management measures issued by regional fisheries management organizations (RFMOs) and/or national legislation. Regional bodies, such as the Commission for the Conservation of Antarctic Marine Living Resources and the Indian Ocean Tuna Commission, have adopted measures requiring or incorporating, respectively, the use of AIS for certain authorized vessels operating within their convention areas. National requirements also vary, with some countries requiring AIS for specific vessels or areas of operation.  

These differences mean that AIS requirements can vary significantly between fisheries and jurisdictions. Effective regulation therefore depends not only on requiring vessels to carry AIS, but also on establishing clear operational rules, including active-transmission mandates, applicable exemptions, protocols for reporting equipment failures and consequences for noncompliance.

4. How is VMS regulated in support of fisheries monitoring?

Unlike AIS, VMS requirements are established primarily through national legislation, RFMO conservation and management measures and bilateral or regional fisheries access agreements rather than a global mandate. This can result in a mixture of disparate requirements and coverage.   

Many countries require certain categories of fishing vessels to carry VMS as a condition of their fishing license, although the thresholds vary by jurisdiction and may be based on vessel size, fishery or area of operation. RFMOs, including the International Commission for the Conservation of Atlantic Tunas , the South Pacific Regional Fisheries Management Organization and the Western and Central Pacific Fisheries Commission, among others, also require authorized vessels operating within their convention areas to use VMS.   

VMS has become one of the primary tools fisheries authorities use to monitor fleet activity and support fisheries control. The regular transmission of vessel position and movement information allows authorities to maintain situational awareness of fishing activity, monitor vessel compliance with local regulations and identify potential risks or anomalies for further investigation. This information can support risk-based monitoring, inspections and enforcement, as well as help verify compliance with fisheries regulations. 

Authorities leverage VMS data in three primary ways:

5. What determines the visibility and coverage of fishing vessels in AIS data?

The visibility of fishing vessels in AIS data depends on several factors, including AIS carriage requirements, vessel size and type, where vessels operate, the availability of satellite and terrestrial receivers and whether AIS equipment is transmitting continuously. Improvements in satellite AIS coverage over the past decade have significantly expanded the ability to monitor fishing activity across the global ocean.

Vessel size

AIS adoption is highest among large industrial fishing vessels and declines sharply among smaller fleets.

As a result, many small-scale and artisanal fishing vessels remain largely invisible to global AIS monitoring.

Geographical coverage

AIS reception also varies across the world’s ocean based on several key factors:

These coverage limitations should be considered when interpreting AIS data, particularly in areas with high traffic or limited reception. Where greater certainty is required, AIS data may be interpreted alongside other available sources of information such as VMS. 

What technologies work alongside AIS to track vessels?

Authorities can strengthen oversight by combining AIS with other monitoring technologies:

Figure 3. Vessel Tracking and Monitoring Technologies

An overview of complementary systems — including AIS, VMS, satellite radar, optical imagery and night-light detection — used for maritime oversight.
© 2026 Global Fishing Watch

Rather than providing the same information, these technologies offer complementary observations that can help fill gaps and strengthen analysis. Used together, they can help authorities detect vessels that may not be visible in AIS, corroborate reported positions, cross-check vessel identities and identify inconsistencies that may warrant further investigation.

A common vessel identifier, such as an IMO number, further strengthens this approach by allowing information from different monitoring systems and databases to be linked to the same vessel.

6. How do AIS and VMS support the detection of illegal, unreported and unregulated fishing?

Although AIS and VMS were designed to serve different functions, their complementary strengths improve the reliability of vessel activity analysis enabling authorities to compare, verify and interpret vessel activity more effectively.

Figure 4. A Coastal Fishing Vessel Track Comparison: AIS and VMS

Comparative satellite AIS and VMS positions show tracking for a single coastal fishing vessel with high polling rates in both systems (10-minute polling for VMS and 70-second average polling for AIS). Land: © OpenStreetMap contributors
© 2026 Global Fishing Watch

AIS promotes transparency and risk detection

As detailed in “Illegal, Unreported and Unregulated Fishing Risk Insights: A New Framework for Analyzing Vessel Behavior,” analyzing AIS data highlights behavioral risk indicators, such as suspicious transmission gaps, identity anomalies, prolonged periods at sea and interactions with vessels associated with high risk activities. These indicators can help authorities identify vessels that may warrant further scrutiny, prioritize investigations and enforcement efforts which allow governments  to target and optimize inspection resources, including through port State controls.

Because AIS broadcasts vessel positions openly, it enables authorities, researchers and civil society to monitor activity across large areas of the ocean.  Analyzing this data allows stakeholders to detect anomalies,potential fisheries risks and regulatory concerns that require further assessment, such as:

AIS data can support investigations and enforcement actions on their own in some jurisdictions and circumstances. Where appropriate, authorities may also combine AIS with other sources of information such as VMS, SAR, optical imagery and vessel registry information to strengthen the evidentiary basis of a case or meet applicable national legal requirements.  

VMS supports control and enforcement

VMS provides secure, regulated tracking data that fisheries authorities use to monitor licensed fishing vessels and investigate potential violations.

VMS tracking data serves as a critical compliance and enforcement tool, allowing authorities to:

VMS relies on satellite positions like GPS to provide fisheries authorities with accurate vessel location data for monitoring, control and enforcement. Transmission through secure communication systems to authorized users helps establish the chain of custody of the evidence.  

7. Can AIS and VMS data be used as evidence in legal proceedings?

Vessel tracking data, including both AIS and VMS records, is widely accepted as admissible evidence in administrative and judicial proceedings across many jurisdictions.  However, the weight given to this evidence will depend on adherence to the applicable national legal frameworks, the facts and circumstances of the case, and the presentation of all of the evidence, including the technical data.

Supporting legal evidence

In legal proceedings, vessel tracking data is typically presented alongside other relevant evidence to establish case facts. Expert testimony often accompanies this data to explain system operations, demonstrate data reliability  and detail how findings were interpreted during the investigation. The admissibility and evidentiary value of vessel tracking data, such as maps or screenshots, is typically treated as technical or scientific evidence and may be sufficient to support administrative or judicial proceedings.

8. What are the technical and operational limitations of AIS and VMS?

Aerial view of cargo ships in the Singapore Strait
© Jeffry Surianto

AIS and VMS have technical and operational limitations that can affect how vessel movements are monitored and interpreted.

AIS

Like any vessel tracking technology, AIS has limitations that should be considered when interpreting vessel activity.

Authorities can often detect suspicious gaps through monitoring systems that flag anomalies, such as unexpected signal loss, reappearance, unrealistic movements or positions on land. In line with IMO guidance, AIS must remain in operation at all times and may be temporarily switched off only when the master believes that continued operation could compromise the safety or security of the vessel, its crew or its cargo. In those authorized exceptions, the incident — including the specific reasons, duration and location — must be recorded in the ship’s logbook and, where the vessel is operating within a mandatory ship reporting system, reported to the competent authority. While detection of disabling events is possible, follow-up enforcement is not always consistent and a growing number of flag and coastal States require operators to report any AIS disabling to authorities in near-real time so they can act quickly on suspected illegal activity. Unauthorized disabling should be subject to investigation and sanctions by flag, port or coastal States and may lead to sanctions.

VMS

VMS is designed for regulatory oversight but also has operational constraints.

Some of these constraints can be addressed through deliberate regulatory and operational decisions. Authorities can require more frequent position reporting, establish data-sharing requirements for foreign-flagged vessels authorized to operate in their waters and adopt common standards and protocols that improve interoperability and information exchange.

Despite these limitations, VMS units are designed to make intentional deactivation difficult and detectable. Deliberate switching off or tampering with VMS is prohibited in many jurisdictions and may constitute a serious compliance violation. Gaps in VMS transmissions can also be flagged by monitoring systems as risk indicators warranting further assessment.

9. Who has the legal authority to access VMS data?

Inside a fisheries monitoring and control center, a high-frequency marine radio sits ready for direct communication with vessels. In the background, the Global Fishing Watch map provides a clear picture of coastal vessel presence using VMS data.
© Global Fishing Watch

VMS data is restricted with access typically limited to authorized government agencies. While access is governed by national legislation and regional fisheries management measures, authorities may choose to share VMS data with third parties under formal agreements and appropriate safeguards. Depending on the applicable legal and institutional framework, authorized recipients of VMS data may include the following entities:

While VMS has historically been treated as proprietary, global views on public access are shifting in favor of transparency, encouraging countries to expand public access to VMS data. Several forward-thinking governments now publish their VMS data through the Global Fishing Watch platform — often with a short time delay to balance security and proprietary interests.

10. What role do AIS and VMS play in the future of fisheries monitoring?

AIS and VMS have transformed how governments monitor fishing activity, but technology alone cannot address illegal, unreported and unregulated fishing while regulatory frameworks remain fragmented. As fisheries management becomes increasingly data driven, combining multiple sources of information is essential for improving transparency, compliance and sustainable ocean governance.

The future of fisheries monitoring will depend not only on advances in technology, but also on stronger regulatory frameworks, more robust implementation, greater interoperability between systems, improved data sharing and a more effective use and exchange of vessel tracking information. Together, these efforts can help authorities make better-informed decisions and strengthen the sustainable management of marine resources.

Strengthening global vessel tracking will require governments to: 

As more countries adopt these practices, authorities will be better equipped to monitor fishing activity, detect potential violations and promote greater transparency across the global ocean.

Looking ahead

While the answers to these 10 questions highlight the distinct strengths and limitations of AIS and VMS, they also offer opportunities to strengthen vessel monitoring and fisheries management. Maximizing the value of these systems requires clear regulatory frameworks, appropriate data-sharing arrangements, standardized data practices and reliable vessel identifiers. 

Used together and supported by other monitoring technologies, AIS and VMS can help authorities improve transparency, strengthen compliance and enforcement and build a more comprehensive understanding of fishing activity.

Endnotes

  1. Global Fishing Watch internal AIS data, 2025. Using the latest vessel identity information, there are 155,702 distinct fishing MMSI with at least 24 hours of activity.

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