System for recognition of ballistic objects using radar and infrared sensors

  • Missile defense radar envelopes. Ballistic missile flight trajectories

  • Medium-range ballistic missile on re-entry (image received by the interceptor missile infrared matrix receiver)

  • Intercontinental ballistic missile warhead in mid-course flight

  • ICBM warhead on re-entry. Distribution of target classification results in time by plasma trail intensity, using X-band radar.

  • The database encompasses over 40 types of modern ballistic missiles, including the electric, magnetic and optical properties of the materials the missile bodies and warhead are made from, the rocket engine and propellant parameters.

  • Target - intercontinental ballistic missile warhead in exoatmospheric flight.

  • Distribution of target classification results based on analysis of radar image dynamics, using X-band radar.

Designation

The ballistic objects’ recognition system is designed for real time automatic recognition of real ballistic targets embedded in the background of false targets.
The hardware-in-the-loop system can be, at the customer’s discretion, built as a separate unit with the interfaces required for interaction with other elements of the missile defense system.

The recognition system software comprises:
  • recognition module;
  • recognition efficiency evaluation module;
  • control and information imaging module.

Performance characteristics

Parameter
Value
Information source
- ground-based C- and X-band radars
- interceptor seeker IR sensors
   
Type of signal used
- narrow-band radar signal
- wideband radar signal
- two-spectrum IR-band signal
Correct recognition probability for radar and IR sensor combination
minimum 0.85
   
Correct recognition probability for radar recognition (for minimum 12dB signal - to - jammer ratio in a pulse))
minimum 0.8
Correct recognition probability for the IR sensor
minimum 0.75
Decision-taking time
less than 3 s
   
Coverage
- exoatmospheric flight
- atmospheric reentry
   
Target database
- over 40 types of modern ballistic missiles of different countries
- full nomenclature of decoys used in ballistic missile defense penetration systems
MTBF, hrs
minimum 2000

Advantages

  • the system enables ignoring harmless false targets, which tangibly saves the expenditure of intercept means while retaining the overall missile defense system effectiveness;
  • fully automatic operation. Operator-free decision-taking;
  • prompt decision-making;
  • high true recognition possibility for small signal-to-noise ratio;
  • taking into account the physical phenomena concomitant to target flight (rocket engine plume, heating and formation of plasma on target entry in the atmosphere, natural IR radiation sources - the sun, the moon, the starts)
Manufacturer’s technical support and SPTA supply outside the warranty period are provided throughout the system service life under separate agreements.
Qualification
special professional training

Radar Recognition Systems

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The ballistic objects’ recognition system is designed for real time automatic recognition of real ballistic targets embedded in the background of false targets.
The hardware-in-the-loop system can be, at the customer’s discretion, built as a separate unit with the interfaces required for interaction with other elements of the missile defense system.

The recognition system software comprises:
  • recognition module;
  • recognition efficiency evaluation module;
  • control and information imaging module.
[~DETAIL_TEXT] =>

The ballistic objects’ recognition system is designed for real time automatic recognition of real ballistic targets embedded in the background of false targets.
The hardware-in-the-loop system can be, at the customer’s discretion, built as a separate unit with the interfaces required for interaction with other elements of the missile defense system.

The recognition system software comprises:
  • recognition module;
  • recognition efficiency evaluation module;
  • control and information imaging module.
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to - jammer ratio in a pulse))<br> </td> <td class="specifications-table__col specifications-table__col_2"> minimum 0.8<br> </td> </tr> <tr class="specifications-table__row specifications-table__row_highlight"> <td class="specifications-table__col specifications-table__col_1"> Correct recognition probability for the IR sensor<br> </td> <td class="specifications-table__col specifications-table__col_2"> minimum 0.75<br> </td> </tr> </tbody> <tbody class="specifications-table__content"> <tr> </tr> <tr class="specifications-table__row specifications-table__row_highlight"> <td class="specifications-table__col specifications-table__col_1"> Decision-taking time<br> </td> <td class="specifications-table__col specifications-table__col_2"> less than 3 s<br> </td> </tr> <tr> <td colspan="1">   </td> <td colspan="1">   </td> </tr> <tr class="specifications-table__row specifications-table__row_highlight"> <td class="specifications-table__col specifications-table__col_1"> Coverage<br> </td> <td class="specifications-table__col specifications-table__col_2"> - exoatmospheric flight<br> - atmospheric reentry<br> </td> </tr> <tr> <td colspan="1">   </td> <td colspan="1">   </td> </tr> <tr class="specifications-table__row specifications-table__row_highlight"> <td class="specifications-table__col specifications-table__col_1"> Target database<br> </td> <td class="specifications-table__col specifications-table__col_2"> - over 40 types of modern ballistic missiles of different countries<br> - full nomenclature of decoys used in ballistic missile defense penetration systems<br> </td> </tr> <tr class="specifications-table__row specifications-table__row_highlight"> <td class="specifications-table__col specifications-table__col_1"> MTBF, hrs<br> </td> <td class="specifications-table__col specifications-table__col_2"> minimum 2000<br> </td> </tr> <tr> <td colspan="3" style="height:50px;"> </td> </tr> </tbody> </table> </div> <br> [TYPE] => html ) [DESCRIPTION] => [VALUE_ENUM] => [VALUE_XML_ID] => [VALUE_SORT] => [~VALUE] => Array ( [TEXT] =>
Parameter
Value
Information source
- ground-based C- and X-band radars
- interceptor seeker IR sensors
   
Type of signal used
- narrow-band radar signal
- wideband radar signal
- two-spectrum IR-band signal
Correct recognition probability for radar and IR sensor combination
minimum 0.85
   
Correct recognition probability for radar recognition (for minimum 12dB signal - to - jammer ratio in a pulse))
minimum 0.8
Correct recognition probability for the IR sensor
minimum 0.75
Decision-taking time
less than 3 s
   
Coverage
- exoatmospheric flight
- atmospheric reentry
   
Target database
- over 40 types of modern ballistic missiles of different countries
- full nomenclature of decoys used in ballistic missile defense penetration systems
MTBF, hrs
minimum 2000

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  • the system enables ignoring harmless false targets, which tangibly saves the expenditure of intercept means while retaining the overall missile defense system effectiveness;
  • fully automatic operation. Operator-free decision-taking;
  • prompt decision-making;
  • high true recognition possibility for small signal-to-noise ratio;
  • taking into account the physical phenomena concomitant to target flight (rocket engine plume, heating and formation of plasma on target entry in the atmosphere, natural IR radiation sources - the sun, the moon, the starts)
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