Missions require multiple sensors to achieve specific objectives. Present sensors use extended-range imaging applications that rely on antiquated technology. This results in extreme sensitivity to size, weight and power. These dismounted sensor configurations either necessitate separate imaging devices, or complex filtering schemes that increase system SWaP, to maintain operational effectiveness in all environments.
Phase I
Is the opportunity to establish the scientific, technical, commercial merit and feasibility of your proposed innovation.
Passive Ranging for Fire Control under Day and Night Conditions
To date much work has been invested in active ranging. However, laser-based probes are detectable and will leave the operator vulnerable, particularly at night. Commercial applications, particularly those for self-driving vehicles, use a combination of both active and passive sensors.
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Thermal Protection Coating for Artillery Projectiles
The Army’s Long Range Precision Fires mission expands the current portfolio of conventional artillery to advanced munition technologies with extended range capability (>70km). Extended range requires the projectile to fly to higher velocities and altitudes as well as longer flight times.
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Optical Computing Network
The use of digital image processing to enable target detection, classification, recognition and identification, as well as targe state estimation for fire control solutions is computationally intensive. It requires significant processing power, which in turn requires significant electrical power.
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Metal Powder Based Additive Manufacturing for use in Portable System in an Expeditionary Environment
The current state of the art utilizes conventional manufacturing technologies such as computer numerical controlled (CNC) machine tools such as mills, lathes, and plasma cutters, which are augmented by various manually operated metal working machines to fabricate metal components.
Joining of Dissimilar Materials for Hypersonic Applications
The U.S. Army must develop highly maneuverable hypersonic weapons that can survive high-G shock loads and harsh aerothermodynamic environments in a GPS-denied environment. To enable these requirements new materials and new manufacturing methods must be developed. There has been increasing desire to develop vehicles and projectiles that travel at the speed of sound and beyond.
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Modeling Tools for Hypersonic Flight
The United States Army has a need to develop high-fidelity, computationally efficient solvers for the aerodynamic analysis and design of vehicles ranging from rotary-wing aircrafts to medium/long-range hypersonic projectiles. The CREATETM -AV Kestrel team has been developing a comprehensive suite of codes with a combined on-body/off-body computational approach for the prediction of flows around such vehicles for over a decade.
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Precision Control of High-speed Autonomous Vehicles under High Disturbances
Unmanned Aerial Systems (UAS) used by the Army may be subject to harsh conditions in hostile environments. They need to be able to sense heavy disturbances in their environment that affect their operations, instantaneously adjust to overcome their impact. Furthermore, they should form and track a mission supporting trajectory in real time with speed and agility.
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Bright Blue Semiconductor Laser Arrays for Military Applications
Laser systems in the infrared have a long history of development for both DoD and commercial applications. Blue laser diode systems have been developed with improved performance over the past 2 decades; however, their brightness and power levels are much less than the best infrared systems.
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Small Unmanned Aerial System for Surveying the Electromagnetic Spectrum
Many military and civilian applications require rapid survey of the electromagnetic spectrum for identification and the geolocation of electromagnetic emitters. A UAS provides an ideal platform for rapid surveys in possibly hazardous environments. For example, in a natural disaster Emergency Management Services (EMS) require a rapid means of surveying the electromagnetic spectrum that will identify cell phone signals and locate the sources of those signals.
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