Bluefin 21 AUV - Search
for MH370
Jason Bach
ASCI 605 – Unmanned Systems Sensing,
Perception, and Processing
Embry-Riddle Aeronautical University-Worldwide
9/16/2016
Maritime
autonomous unmanned vehicles have been used more recently for different
situations due to the advanced technology being used which has greatly improved
their efficiency, consumer confidence, and uses. The Bluefin 21 was put in the
limelight for aiding in the oceanic search for Malaysian Flight MH370 which
crashed into the Indian Ocean with 239 passengers on March 8th of
2014 (Pearlman, 2014). The Bluefin 21 dove to depths of 14,800 feet covering 42
square miles on its first four dives in search of MH370 wreckage (Pearlman,
2014). The following Figure1 depicts the Bluefin 21 search diagram.
Figure
1. Bluefin 21 search for MH370. Retrieved from http://www.livescience.com/44952-how-the-bluefin-21-searches-for-flight-370-wreckage-on-the-ocean-floor-infographic.html
Sensor Systems for the Bluefin 21
The sensor package used on the Bluefin 21 consisted of side scan sonar, an acoustic modem for
communication at depths, a sub-bottom profiler, a Synthetic aperture sonar, an
imaging sonar, a multi-beam echosounder, a video camera, and a still camera
(General Dynamics, 2016). A towed hypersensitive hydrophone from the support
vessel can detect signals up to 6,000 meters deep relayed from the AUV. The
Bluefin 21 uses an Inertial Navigation Sensor for navigation accuracy
underwater along with a USBL system, a LBL system, a Doppler Velocity Logger,
an altimeter, a pressure sensor, a compass, an Inertial Measurement Unit, an
Acoustic tracking transponder, and a GPS (General Dynamics, 2016). The operator
tool suite provides a laptop interface for planning, monitoring and execution,
data management, and post-mission analysis of the Bluefin 21 with real time
data provided to the operator during the mission. The following Figure 2
depicts the Bluefin 21 while being deployed.
Figure
2. Bluefin 21. Adapted from http://www.telegraph.co.uk/news/worldnews/asia/
malaysia/10774740/Malaysia-Airlines-MH370-Bluefin-21-submarine-reprogrammed-to-reach-record-depth.html
Possible Improvements to the Bluefin 21
The Bluefin 21 is a very
versatile and successful AUV. Two possible additions to make it even better
would be extending the operational time underwater with an alternate power
system to compliment the lithium battery life which is currently at 25 hours of
operation. Another option to add would be a deployable arm to grasp and
retrieve small objects or move debris on the ocean bottom. These additions
would improve options available for different missions required.
Combining Maritime Unmanned Systems with
UAV’s to Enhance Operations
Maritime
systems could be used in conjunction with unmanned aerial systems to enhance
their effectiveness. Data could be collected or relayed from AUV to UAV over
longer distances possibly at a faster speed depending on environmental
conditions operated in. Working together would be more feasible as the UAV
could use the AUV to identify objects up close once the UAV has located it from
the air. Once objects are found by the UAV the AUV could then retrieve the
object if capable and return to the support vessel. Twice the sensors and
capabilities with combined usage of AUV’s and UAV’s can only be better
especially in search and rescue situations on the ocean or other large body of
water.
Advantages of Unmanned Maritime Systems vs
Manned Systems
Unmanned
maritime systems have advantages over manned maritime systems in some areas of
operation. One obvious advantage is no human life is danger while the unmanned
system is operating in or under water. A second advantage is the versatility,
small size, and less funding needed to procure and operate the maritime
unmanned systems. Again if military operations are involved no human lives are
in danger of being injured or lost during weapon deployment or if the enemy attacks
the boat, ship, or submarine involved. Unmanned maritime systems never get
tired, rarely break down, can be programmed to multitask, and can be used in
several applications with different sensor payloads. The maritime unmanned systems
are comprised of multiple sensor packages of which many sensors perform better
than manned maritime vessels with the unmanned system operating at a fraction
of the cost in comparison to its manned equivalent.
References
General Dynamics. (2016). Bluefin
Robotics. Retrieved from http://www.bluefinrobotics.com
/vehicles-batteries-and-services/bluefin-21
Pearlman, J. (2014, April 18). Malaysia Airlines MH370: Bluefin-21 submarine
reprogrammed
to reach record
depth. The Telegraph. Retrieved from http://www.telegraph.co.uk
/news/worldnews/asia/malaysia/10774740/Malaysia-Airlines-MH370-Bluefin-21-submarine-reprogrammed-to-reach-record-depth.html
Tate, Karl. (2014, April 18). How
the Bluefin-21 searches for Flight 370 wreckage on the
ocean floor. Retrieved
from http://www.livescience.com/44952-how-the-bluefin-21-searches-for-flight-370-wreckage-on-the-ocean-floor-infographic.html


Jason,
ReplyDeleteyou and I have picked the same topic, it is interesting how we both pointed out power improvement for system endurance during search and rescue procedure. Then the advantages offer by such system is enormous given the fact that it can stay deep underwater for a prolong time and never get tired as if it was human diver.
Frank
No doubt that the Bluefin 21 is the AUV workhorse for SAR operation. I like the facts that it has the 41, 800 feet dive depth and can operate autonomously for 25 hours straight. I also like the suite of underwater sensors that makes the SAR operation easier to command as well as the proven Inertial Navigation Sensor for accurate undersea exploration. I like the recommended improvements of an alternate power system to extend the operation time and also the deployable arm. What type of alternative power system do you have in mind?
ReplyDeleteGreat post, this vehicle is a great system for SAR operations. Being able to have a long operating time makes it ideal for any search phase because this could take some time and possibly cover a large area.
ReplyDelete