Seismo Sensor de solo autônomo

The Seismo Unattended Ground Sensor is a buried seismic detection system. It senses people walking and vehicles driving over the ground above it, with nothing visible on the surface and no fence required. Seismo covers the open ground, approach routes and unfenced boundaries a fence-mounted sensor cannot reach — and it does it covertly.

Each system is built from four or eight geophone detectors wired back to a single analyzer. The detectors are buried along the line you want to protect, typically one every 6 to 10 meters (20 to 32 ft), and each one listens to ground vibration in a full 360° circle around itself. The analyzer reads the seismic signature of every disturbance and classifies it, so a person crossing the line is treated differently from a tractor in the next field, from wind, and from rain.

Because the detectors are underground and entirely passive, there is nothing for an intruder to see, photograph or walk around. The system runs on 12–48VDC, is rated IP68 for permanent burial, operates from −30°C to +70°C (−22°F to +158°F), and reports alarms on a dry-contact relay into whatever alarm panel, VMS or SCADA system you already run.

Sistema de segurança perimetral de sensores terrestres

How Does the Seismo Ground Sensor Detect Intruders?

Every footstep, wheel and track puts energy into the ground. Seismo reads that energy and decides what produced it.

  1. Detection. Each buried geophone turns ground vibration into an electrical signal. The detectors are passive — they transmit nothing, so there is no field for an intruder to sense, jam or spoof.
  2. Signature analysis. The analyzer compares the incoming waveform against the known seismic signatures of walking, running, digging and vehicle movement. A person’s gait is a repeating low-amplitude pattern; a vehicle is continuous and carries far more energy.
  3. Classification and alarm. When the pattern matches a real target the analyzer closes a dry-contact relay and reports which detector saw it, so the alarm tells you where along the buried line the movement is.

Rain, wind and traffic on a nearby road reach the sensors as well. They are rejected at the signature stage rather than by simply lowering sensitivity, which is what lets the system stay at a useful setting instead of being turned down until it stops alarming.

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Seismo Sensor Layout:

A Seismo system is supplied as four or eight detectors on one analyzer. They are buried either in a line along a route you want covered, or in a square around a fixed asset such as a generator, a wellhead, a tank or a cabin.

Spacing is typically 6 to 10 meters (20 to 32 ft) between detectors, which gives a protected run of roughly 80 m (250 ft) per system. Each detector covers a circle around itself, so a correctly spaced line has no gap between detectors and no blind corner. Where the run is longer, systems are chained.

The right spacing depends on the ground. Sand, clay, compacted gravel and frozen soil all carry vibration differently, so the spacing for a site is set by a survey and a live walk test, not by a figure taken off a datasheet.

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Here are five reasons a fence line alone will not protect open ground

There Is Nothing To Mount On

Approach roads, tree lines, riverbanks and open desert have no structure to carry a fence sensor. A buried detector does not need one.

Visible Security Gets Studied

A camera mast or a fence sensor tells an intruder exactly what to defeat and where. A sensor underground gives them nothing to plan against.

Cameras Need Light And Line Of Sight

Fog, dust, glare and darkness all cost a camera range. Vibration traveling through the ground is unaffected by the weather above it.

The Target Is Not Always The Fence

Fuel tanks, wellheads, pump houses and equipment yards sit well inside the perimeter. Seismo rings the asset itself, not just the boundary.

Temporary Sites Still Need Cover

Construction compounds, remote camps and seasonal operations rarely justify a fence. Detectors can be lifted and reburied at the next site.

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Unique features of the Seismo ground sensor system

  • Nothing above ground. Detectors, cable and connections are all buried. There is no post, no bracket and no visible cable run, so the protected line cannot be identified, photographed or simply walked around.
  • Classification, not just detection. The analyzer separates a person from a vehicle, and both from environmental noise, before it raises an alarm — and it reports which detector triggered, so the alarm carries a location.
  • Built to stay in the ground. The detectors are IP68 sealed for permanent burial and rated from −30°C to +70°C (−22°F to +158°F). Once they are in, there is nothing to service.
  • Low power, easy to feed. 12–48VDC, drawing around 500mA at 12V. A modest solar panel and battery will carry a system at a remote site with no mains supply.
  • Talks to what you already own. Alarms come out on dry-contact relays, normally open or normally closed, so the system drops straight into an existing alarm panel, DVR, VMS or SCADA. A wireless link is available where trenching back to the head end is impractical.
  • Standalone or layered. Seismo runs on its own at a small site, or as the buried layer beneath a fence sensor and camera system at a large one — giving early warning while an intruder is still on the approach, before they reach the fence.
  • Tuned to the soil it sits in. Sensitivity is set in software against live walk tests on the actual ground, so the system is calibrated to that site rather than to a generic default.
Parceiros da RBtec no mundo
Sistema de segurança perimetral da RBtec protegendo uma instalação cercada
Close da tecnologia de detecção montada em cerca da RBtec
Demonstração do sistema de sensores de solo Seismo
Number of Sensors

4 or 8 buried geophone detectors per analyzer unit

Detection Pattern

Circular, 360° around each detector. Published figures indicate up to 10 m (33 ft) diameter per sensor and up to 80 m (250 ft) per system. Actual coverage depends on soil type, moisture, compaction and burial depth, and is confirmed by on-site walk testing.

Sensor Spacing

Typically 6 – 10 m (20 – 32 ft) between detectors, set by site survey

Requisitos de alimentação

12 – 48VDC, 500mA @ 12VDC

Operating Temperature

−30°C to +70°C (−22°F to +158°F)

Environmental Protection

IP68, rated for permanent burial

Alarm Output
  • Dry contact relay, normally open or normally closed
  • Optional wireless link where cabling back to the head end is impractical
Classificação de alvos
  • Footsteps and running
  • Vehicle movement
  • Digging activity
Integração

Standalone, or over IP network into an existing alarm panel, DVR, VMS or SCADA system

More Information About the Seismo Ground Sensor System

A ground sensor is a detector buried in the soil that senses the vibration a person or vehicle makes moving across the surface above it. Nothing is visible above ground, so there is no camera, post or fence for an intruder to see or avoid. Seismo uses geophone detectors wired back to an analyzer that reads and classifies each vibration before it raises an alarm.

The detectors sit in the top layer of soil — deep enough to be out of sight and clear of mowing and surface traffic, shallow enough to stay well coupled to the ground. Burial depth is one of the things that changes what a sensor picks up, so it is set during installation and confirmed with a live walk test rather than fixed in advance from a table.

Yes. The analyzer compares every incoming waveform against the seismic signatures of walking, running, digging and vehicle movement. A person’s gait is a repeating, low-amplitude pattern; a vehicle is continuous and carries far more energy. Signals that match neither — wind, rain, distant road traffic — are rejected at the signature stage, before an alarm is raised.

One analyzer drives 4 or 8 detectors. Published figures indicate up to 10 m (33 ft) diameter per sensor and roughly 80 m (250 ft) for a complete system with detectors spaced 6 to 10 m (20 to 32 ft) apart. Ground coupling governs what you actually get — soil type, moisture, compaction and depth all change the picture — so every layout is confirmed by on-site walk testing. Longer runs are covered by chaining systems.

The analyzer reports which detector triggered, so an alarm carries a position along the buried line rather than a single site-wide signal. Alarms are output on a dry-contact relay, normally open or normally closed, so they drop into an existing alarm panel, DVR, VMS or SCADA system. The same setup software is used to run and record walk tests when the system is commissioned.

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