INTERNATIONAL ELECTRONIC MACHINES CORPORATION — National Aeronautics and Space Administration SBIR Phase I: A1
INTERNATIONAL ELECTRONIC MACHINES CORPORATION — SBIR Phase I award from National Aeronautics and Space Administration.
- Amount
- $123,518
- Agency
- National Aeronautics and Space Administration
- Program / Phase
- SBIR · Phase I
- Topic
- A1
- Solicitation
- SBIR_18_P1
- NAICS
- —
- Place of performance
- NY
- Period
- 2018-07-27 → 2019-02-15
Description
<p style="margin-left:0in; margin-right:0in"> </p><p style="margin-left:0in; margin-right:0in">Current methods for obtaining pressure profiles on airfoils require complex pressure-scanner setups, which are expensive, very time-consuming, have multiple points of potential failure, and physically change the structure/loading on a test airfoil, especially in the case of smaller airfoils. This severely reduces the frequency at which such testing can be done, and the number of airfoils on which such testing can be practically performed.</p><p style="margin-left:0in; margin-right:0in"> </p><p style="margin-left:0in; margin-right:0in">To address these issues, IEM proposes the <strong>Low Profile Aerodynamic Testing Tape (LPATT)</strong> derived from and building upon <strong><em>millions of dollars</em></strong> in miniature wireless sensor research and <strong><em>patented and patent-pending</em></strong> technology and innovations. LPATT will be an<strong><em> ultra-thin, easily applied pressure and temperature wireless sensor node</em></strong> (<strong><em>other sensing parameters possible</em></strong>) that can be <strong><em>applied</em></strong> in any location with minimal time and effort and<strong><em> NO modifications</em></strong> to the airframe of any kind, with <strong><em>minimal impact</em></strong> on airstream passage. LPATT will <strong><em>match or exceed </em></strong>current-technology measurement accuracy, be <strong><em>self-powered,</em></strong> will <strong><em>store all information onboard</em></strong> and be capable of either <strong><em>real-time transmission </em></strong>of data <strong>or</strong> of transmitting the data<strong><em> later on demand</em></strong>, and may be designed with 50 or more pressure sensors with high sampling rates. Data interface between LPATT will be accomplished using a <strong><em>Data Collection Interface System (DCIS)</em></strong> to collect, process, and transmit data to outside systems.</p><p style="margin-left:0in; margin-right:0in"> </p><p style="margin-left:0in; margin-right:0in">The use of LPATT will <strong><em>drastically reduce the cost and time</em></strong> involved in wind-tunnel and flight test pressure sensing trials and may offer <strong><em>direct benefits in other areas</em></strong> such as providing the data for operation of <strong><em>performance adaptive aeroelastic wing shape control</em></strong>s in future aircraft designs. IEM will work with <strong><em>Dr. Michael Amitay of Rensselaer Polytechnic Institute</em></strong>, who will provide access to and expertise with a functional laboratory wind tunnel for tests and demonstrations of LPATT prototypes.</p>