MILITARY LASER WARNING SYSTEM – LW2000

MILITARY LASER WARNING SYSTEM – LW2000

Military Laser Warning System LW2000 is an advanced technology designed to detect, classify and determine different laser codes and frequencies of laser-guided threats within just 200 milliseconds.

Laser warning receiver system is highly reliable and tested in different environmental conditions such as high temperature, low temperature, high humidity, shock-vibration and EMI/EMC tests. It is also equipped with NATO AEP 3733 standards, which safeguards it against false alarms such as sunlight, remote controller, artificial-fake light and hand laser.

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Product Description & Technical Document
22-04-2022

DS-0203202212001421-040-EN DATASHEET

Purpose

 Military Laser Warning System LW2000 is designed to provide users with a comprehensive and reliable passive protection against laser-guided antitank threats, laser rangefinders and laser target designator, ensuring the safety and security of military personnel and equipment. LW2000 Laser Warning System enables protection for 360° of the vehicle.

Where to use

Tracked & Wheeled Military Vehicles: The LW2000 Military Laser Warning System can provide reliable defense against laser-designator,laser rangefinder or laser beam in different military operations and can ensure the safety and security of military personnel and equipment.

Navy & Maritime : The LW2000 Military Laser Warning System can be used in ships  vessels and frigates  to protect equipment and personnel from laser-guided threats.

Key Features

  • Rapid detection, classification and determination of different laser codes and frequencies of laser-guided antitank threats within 200 milliseconds.
  • Capable of detecting and tracking threats simultaneously
  • Exceptional precision in angle accuracy
  • Equipped with NATO AEP 3733 standards, safeguarded against false alarms such as sunlight, remote controller, artificial-fake light, hand laser.
  • Best angle accuracy
  • Highly reliable in different environmental conditions such as high temperature, low temperature, high humidity, shock-vibration and EMI/EMC tests.
  • Sophisticated mechanism for identifying and prioritizing threats accurately and in real-time.
The LW2000 Military Laser Warning System has a highly sophisticated mechanism for identifying and prioritizing threats during passive protection.

Background

It determines threat identity and priority by comparing threat parameters with the threat data included in mission data folder which would be previously loaded to the system. 

This mission data folder can always be updated and the threat classes included can be increased. 

Laser Warning System LWS2000 is an advanced technology designed to detect, classify and determine different laser codes and frequencies of laser-guided threats within just 50 milliseconds
Figure 1: Schematization of the possible LBR threat scenario (left side), and LTD threat scenario (right side)

The Laser Warning System is a passive defence warning system aiming to detect, track and warn different kinds of laser threats in the typical wavelength range between 0.5 – 1.65 µm, allowing the monitoring of the space around the platform and the detection of the incoming threats in advance, by reducing the threat detection time.

Its purpose is to reduce the vulnerability to the numerous laser associated weapon threats on the modern EW battlefield, by providing the platform with an early warning when irradiated by a pulsed, modulated or continuous laser light.

The LWS is employed to protect sea, land or air combat platforms.

Ensuring a 360° coverage in azimuth and 90° in elevation, by the positioning of two or more sensor heads on the platform.
It is a reliable, flexible, self-contained laser threat detection system, suitable for integration into any protection system.

These warning systems should be able to distinguish different kinds of threats.
The most common laser threats that this kind of system is able to detect are: Laser Range Finder (LRF) used for distance measurement, Laser Target Designator (LTD) used for target designation, Laser Beam Rider (LBR) used for missile guidance, and other lasers used for illumination purposes, such as illuminators, pointers, dazzlers and night vision devices.

Characteristics

LRF

LTD

LBR

Typical Laser Peak (W)

106

106

few

Laser Beam Divergence (mrad)

<1

<1

<1

Power density at the target

High (on-axis)

Low (off-axis)

High (on-axis)

Low (off-axis)

Very low (on-axis)

Undetectable (off-axis)

Wavelength (µm)

1.06 & 1.54

1.06

Near Infrared

Speed of the incoming threat (Mach)

2

1 – 2

>4

Table 1: Typical laser threat sources characteristics

The incident laser beam radiation is focused and directed by the optics and transmitted toward the detector.
The optical signal is transduced into a digital signal from the detection subsystem.
Finally, the processor subsystem produces the warning output, which contains the characteristics of the laser radiation.
This information is used to trigger an appropriate countermeasure against laser-hostile threats.

The optical subsystem can be composed by mirrors, lenses and optical elements, properly arranged to focus the optical signal on the detector.
It could be additionally equipped with filters, in order to reduce the effects of background noise, with the aim to reduce the false alarm rate.

The detection subsystem may include different kind of photo sensors (CCD – CMOS – fast-photo detector), to cover the entire spectral band, and a spectrometer (Fabry-Perot etalon, Michaelson/Fizeu/grating interferometer), depending on the method to reconstruct the characteristics of the incident laser beam.

The processor subsystem is the core of the entire system; it consists of digital signal processors able to compare the measured incident beam with data pre-stored in the processor, in order to recognize the type of laser threat.

A typical LWS usually performs the following activities:

  • Detect Laser Threats Characteristics
    It defines the capability to detect all types of lasers pulsed or continuous wave and discriminate them from the background and any other light sources, by identifying their main characteristics, such as: Pulse Repetition Frequency – laser power – wavelength band.
  • Threat Type Identification
    It consists in the comparison between the inferred parameters, measured by the hostile laser threat, with the internal database, which is properly pre-stored according to the operative scenario.
  • Threat Direction of Arrival
    It is the ability to define the direction of the incoming threat, in terms of azimuth and elevation coordinates.
    This is the essential to trigger the counter measure process.
  • Reflected Beam Rejection
    The main issue in the laser detection is to discriminate the radiation coming from the direct laser beam, to the radiation due to the atmosphere scattering (aerosol) or reflected by platform itself (target splash).
    LWS must be able to get rid of unwanted laser radiations, by means of filters, in order to reduce the false alarm rate.
  • Multiple Threats Handling
    LWR must have the capability to deal with multiple threats since there are a variety of laser sources in the battlefield scenario.
    The LWS is able to manage multiple threats, occurring with delay time, identifying direction of arrival and type of each threat.
    However, the capability to reject scattered or reflected beams restricts the multiple threats handling.
  • Detection Efficiency
    It is defined by the possibility to record a laser signal at maximum distance with the probability of correct detection not less than 0.9.
    Efficiency decreases with the maximum detection distance of the laser signal source.
    This decrease is caused by the influence of different factors including weather conditions, background situation and atmospheric turbulence.
Laser Warning System LWS2000 is an advanced technology designed to detect, classify and determine different laser codes and frequencies of laser-guided threats within just 50 milliseconds
Figure 2: Different laser energy contributions illuminating the LWS

Test Standarts

Test standards for L2000 may vary depending on the specific system being tested, but some general standards that may be applicable include:

  1. MIL-STD-810G: This is a standard for environmental testing, including mechanical shock, vibration, temperature, humidity, and altitude. It ensures that the MLWS can withstand various environmental conditions.

  2. MIL-STD-461F: This is a standard for electromagnetic compatibility testing, which ensures that the MLWS does not interfere with other equipment or systems and is not affected by external sources of electromagnetic interference.

  3. MIL-STD-1275E: This is a standard for vehicle power characteristics, which ensures that the MLWS operates reliably on vehicle power systems.

  4. STANAG 3733: This is a NATO standard for laser warning systems, which specifies performance requirements and test methods for these systems.

NERO Industries ensures high-quality and high qualification by testing all the products before sending to the ground.

What does it do

MILITARY LASER WARNING SYSTEM (MLWS) is a warning system designed for military platforms. The system provides a warning against laser beams directed towards the target platform. This warning enables the crew on the platform to take timely action when there is a laser threat to them.

MLWS is typically used in military platforms such as aircraft, naval vessels, and land vehicles. The main purpose of the system is to minimize the impact of laser-based weapons used by the enemy. It can be used to provide warnings against many laser sources, including laser designators, laser rangefinders, laser-guided missiles, anti-tank weapons, and air defense systems.

MLWS uses high-precision sensors to detect dangerous situations. The sensors measure the intensity, wavelength, and other characteristics of the laser beams to determine the level of threat. To ensure appropriate measures can be taken, MLWS typically works with an audible and/or visual warning system.

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Technical Data Table
Response Time

Max. 500ms

Threat Classification

Laser Distance Meter (LDM),
Laser Target Designator (LTD),
Laser Guidance Beam (LGB

Detection Possibility

LDM (Band I-II-III): ,
LTD (Band I-II-IV): ,
LGB (Band III-IV):

Detection Sensitivity

10-20 (W/m²)

Vertical Section Sight Range

(-20°) – (+ 70°)

Total Azimuth Visual Angle

100° / Unit

Laser Detection Resolution

±15°

Communication System

CANBus (J-1939)

Protection Level

IP67

Operating Temperature

-40°C / +60°C

Storage Temperature

-55°C / +85°C

Salt Fog Resistance

800 hours

Power Consumption

120 mA ±50 mA @24 VDC Nominal

Weight

1.8±0.5 kg

False Alarm

<0,2/hour