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Sea Survival revision module 6 of 8

SIG

Flares, EPIRB, PLB, SART, and AIS

A source-reviewed distress-signalling system for alert, identity, communication, location and confirmation across satellite, AIS, radar and visual receiver paths.

8 guided lessons · 8 practice questions · 8 flashcards

Lesson previewDistress Signalling Layers1 section shown

Preview lesson

Distress Signalling Layers

What you will learn

Separate initial alerting, two-way communication, on-scene locating and visual confirmation, then identify which receiver and failure path supports each function.

A distress plan is not a bag of gadgets. It is a chain of functions: raise an alert, identify the casualty, communicate what is happening, help rescuers locate the person or survival craft, confirm the final position and keep useful evidence flowing when one path fails.

VHF DSC and voice, a 406 MHz EPIRB or PLB, AIS MOB, radar SART, AIS-SART, lights, flares and smoke do not perform one interchangeable job. A digital or satellite alert can reach a rescue network; voice can explain the situation; a homing or AIS signal can help at the scene; and a short visual signal can confirm the exact target when somebody is looking.

Count functions, receivers and independent failure paths, not gadgets. Several devices can share one aerial, battery, operator or inaccessible locker. MAIB's 2021 capsize case recorded fixed and handheld VHF, an EPIRB and PLBs that could not be used because they were all left in the wheelhouse. Quantity did not create accessibility.

Alerting is not the same as communicating, and locating is not proof that the initial alert reached the right receiver. Before departure, name who can detect each signal, what information it carries, what it cannot carry and what remains when the vessel loses power, rolls over or separates from a person.

Distress signal decision board

Rehearse the receiver, function, failure and handover

Select an observed case to separate initial alerting, two-way communication, on-scene location and visual confirmation. Every state is complete in text and does not depend on colour.

  1. 1Alert
  2. 2Identify
  3. 3Communicate
  4. 4Locate
  5. 5Confirm
  6. 6Maintain

Count functions, receivers and independent failure paths rather than gadgets. A beacon can raise an alert without providing a conversation; a locating aid can be invisible to incompatible receivers; a flare can expire before anybody is looking.

Primary task

Raise the effective distress alert without waiting for a visual sighting. Where the fitted system, coverage and trained operator permit, DSC and Mayday carry identity, position, situation and assistance into the rescue network.

Supporting layer

Prepare the correctly registered 406 MHz beacon as an independent alerting and locating route, keep voice and listening watch, and retain short-duration visual signals for a receiver that is likely to detect them.

Failure check

Check whether the radio still has a working aerial, current position, power and operator. A lit display, transmitted alert or activated beacon is not confirmation that the complete incident message was received.

Evidence and handover

Report the alert method and time, identity, position source and age, people, vessel state, beacon status, communication received and every failed or unknown dependency.

Tabletop decision rehearsal only. This board cannot assess a live incident, radio or satellite coverage, visibility, wind, fuel, weather, receiver compatibility, carriage duty or equipment condition; choose or approve a product; operate, test, mount, release, service or dispose of a radio, EPIRB, PLB, AIS MOB, SART, flare or smoke signal; teach pyrotechnic firing; guarantee that an alert was received or that rescue is coming; replace recognised SRC or sea-survival training; or direct a real emergency. Follow current official guidance, the exact vessel and manufacturer instructions, and HM Coastguard or rescue-unit directions.

Choose an observed case and rehearse the receiver, function, failure evidence and handover rather than selecting equipment by name alone.

Worked example

A yacht has sent a VHF DSC distress alert and Mayday for an uncontrollable fire. The crew has a registered EPIRB, handheld VHF, radar SART and flares ready for a possible transfer.

  1. 1Keep the voice and listening watch active so position, people, fire boundary and assistance can be updated.
  2. 2Prepare the EPIRB as an independent satellite alerting and locating route and keep the handheld with the receiving platform.
  3. 3Reserve the SART and short visual signals for compatible or visible search assets instead of treating them as duplicate initial alerts.

Sense check: Every item now owns a distinct receiver and purpose; failure of the fixed set does not silently remove every route to assistance.

Distress Signalling Layers
AlertVHF DSC, voice Mayday or 406 MHz beaconWhich rescue or nearby receiver can detect it now?
CommunicateVHF voice or another two-way routeCan position, people, situation and changes be exchanged?
Locate on scene121.5 MHz homing, radar SART, AIS-SART or AIS MOBDoes the approaching unit carry the compatible receiver?
Confirm visuallyLight, smoke, red flare or other visible signalIs somebody likely to see this short-duration signal?

Audit by receiver and failure

A skipper lists six distress devices but cannot say which one alerts shore after a capsize or which one a nearby yacht can display.

  1. 1. Name the receiver

    Link each signal to coast station, satellite system, rescue radar, AIS receiver, aircraft, vessel or visual lookout.

  2. 2. Name the information

    Separate identity, position, voice detail, bearing, local target and visible confirmation.

  3. 3. Break one dependency

    Remove the main battery, masthead aerial, wheelhouse access or expert operator on paper and identify what still works.

Sense check: If the same inaccessible locker or person owns every layer, the inventory still has one point of failure.

Common mistake or limitation

  • Treating every device as another way to send the same alert.
  • Counting equipment without checking the receiver, power, aerial, access and operator.
  • Using a short visual signal before anybody is likely to detect it.

Recap

  • Alert, communicate, locate and confirm are different functions.
  • Each signal needs a compatible receiver and a usable deployment path.
  • Resilience comes from independent functions and access, not device count.

Optional quick check

Section 1 of 1

A vessel has sent a satellite beacon alert but cannot exchange its changing fire and casualty details. Which function is still missing?

Choose one answer