DESC0025078
Project Grant
Overview
Grant Description
Electromagnetic inductive coupling analysis (EMICA) for in situ monitoring of insulation on energized cables
Awardee
Funding Goals
DE-FOA-0003202
Grant Program (CFDA)
Awarding Agency
Funding Agency
Place of Performance
Golden,
Colorado
80403-1636
United States
Geographic Scope
Single Zip Code
Related Opportunity
Analysis Notes
Amendment Since initial award the End Date has been extended from 04/21/25 to 07/07/25.
TDA Research was awarded
Project Grant DESC0025078
worth $198,215
from the Office of Science in July 2024 with work to be completed primarily in Golden Colorado United States.
The grant
has a duration of 1 year and
was awarded through assistance program 81.049 Office of Science Financial Assistance Program.
The Project Grant was awarded through grant opportunity FY 2024 Phase I Release 2.
SBIR Details
Research Type
SBIR Phase I
Title
Electromagnetic Inductive Coupling Analysis (EMICA) for In Situ Monitoring of Insulation on Energized Cables
Abstract
Statement of the problem or situation that is being addressed throughout Phase I portion of your proposal.
The power, instrument, and control cabling that is used in nuclear power plants (NPPs) is subject to relatively harsh conditions that may accelerate degradation and shorten cable lifetime, especially for the outer insulation. The majority of NPP cabling in-use today is 50+ years old and periodic inspection is critical for maintaining safe operations. Operators applying for license extensions on existing NPPs are often required to develop a cable management program to ensure the safety of the plant. Currently, these plans rely on destructive testing, or taking a cable out of service so the test can be done in a de-energized state.
General statement of how this problem is being addressed.
TDA proposes using pulsed Electro Magnetic Inductive Coupling Analysis - Time Domain Reflectometry (pulsed EMICA-TDR) to quantify overall cable health/degradation in NPPs. The key innovation that will enable real time NDE on energized cables is inductively isolating the section of cable being probed. Combining common clamp-style non-contact current probes to transmit EMICA-TDR signals into the cable with a novel isolation approach ensures that data/power transmission from NPP operations will not interfere with the EMICA-TDR interrogation (or vice versa).
What is to be done in Phase I?
During the Phase I project, TDA will address two major shortcomings of traditional NPP cable health monitoring by implementing pulsed EMICA-TDR to inspect the insulation and the conductor of the cable simultaneously. Phase I work will culminate with a functional prototype unit that has been demonstrated on energized cables. This prototype will be an excellent jumping off point for engaging DOE and other stakeholders in the Phase II project.
Commercial Applications and Other Benefits
EMICA-TDR also enables spatially locating where hotspots or problematic areas occur along the cable length while simultaneously probing both the inner conductor and the outer insulator. Outside the nuclear industry, such a cable-testing device which works on energized cables has wide use in cables supporting communications and infrastructure necessary for transformational technologies such as electric cars, trains and planes and anything in our daily lives that requires conduction of electric energy. As more and more conducting materials underpin our daily lives, the need for non-contact non-destructive evaluation (NDE) which can assess cable health in service and over long distances of cable also increases.
Topic Code
C58-29x
Solicitation Number
DE-FOA-0003202
Status
(Complete)
Last Modified 5/28/25
Period of Performance
7/22/24
Start Date
7/7/25
End Date
Funding Split
$198.2K
Federal Obligation
$0.0
Non-Federal Obligation
$198.2K
Total Obligated
Activity Timeline
Transaction History
Modifications to DESC0025078
Additional Detail
Award ID FAIN
DESC0025078
SAI Number
None
Award ID URI
SAI EXEMPT
Awardee Classifications
Small Business
Awarding Office
892430 SC CHICAGO SERVICE CENTER
Funding Office
892401 SCIENCE
Awardee UEI
MK5ANJVWVZK7
Awardee CAGE
0BHX7
Performance District
CO-07
Senators
Michael Bennet
John Hickenlooper
John Hickenlooper
Modified: 5/28/25