INTELLIGENT FIBER OPTIC SYSTEMS CORP — Department of Energy SBIR Phase II: 19c
INTELLIGENT FIBER OPTIC SYSTEMS CORP — SBIR Phase II award from Department of Energy.
- Amount
- $999,898
- Agency
- Department of Energy
- Program / Phase
- SBIR · Phase II
- Topic
- 19c
- Solicitation
- DE-FOA-0001975
- NAICS
- —
- Place of performance
- CA
- Period
- 2019-05-28 → 2021-05-27
Description
DOE seeks innovative embedded sensing to enhance control of industrial gas turbines (GTs). Although advanced sensor technology has been demonstrated in development turbine systems, the vast majority of sensors do not meet the requirements for deployment to production turbines. This prevents optimization of control using real-time, in situ sensor data. Combined-cycle plant operation brings clear plant-level efficiency benefits, but it also increases the cost of GT downtime; the number of assets idled due to GT downtime is greater than for simple-cycle plants, and the there is a risk of cascading failure across interconnected turbines and generators. The importance of health monitoring, diagnostics, and prognostics for reliability is therefore magnified. IFOS proposes development of an innovative, embedded-sensor-enabled control approach for industrial GTs. The IFOS concept leverages existing advanced fiber-optic sensing technology including ultra-thin optical fibers. IFOS’s innovation will enable measurement of turbine blade temperature and stress parameters that are closer to the harshest of turbine environments, and use this real-time sensing information to augment existing control schemes to decrease margins and thereby increase system efficiency and reduce cost of ownership. Conventional electronic sensors are relatively bulky and require multiple lead wires. Few sensors are able to be deployed on production turbines. In IFOS’s approach, there are no ‘active’ components on the turbine blade or shaft – all optical signal processing and post-detection electronics are situated on stationary components in a relatively benign environment, removing the need for expensive ultra-high-temperature electronics. IFOS will develop a methodology that can be matured to a production system, enabling long-term benefits to the GT industry by supporting better controls, lower emissions, longer life, and lower lifetime operating costs. IFOS demonstrated concept feasibility on a simulated turbine engine system featuring blades with surface- mounted fiber-optic sensors. A custom controller program was developed to demonstrate the utility of measured data in controller turbine operating parameters. IFOS held discussions on technology integration pathways with major OEMs and planned for Phase II testing on high fidelity GT testbeds. The 3 proposed technical objectives were accomplished. In collaboration with its university test partner and GT OEMs, during Phase II IFOS will demonstrate Turbine*Sense™ performance in testbeds of increasing environmental fidelity. Phase II will establish a clear path forward to full-scale GT instrumentation testing. Commercial Applications and Other Benefits: IFOS’s ultimate vision is intake-to-exhaust GT intelligence using embedded, hair-thin fiber-optic sensor networks benefiting control, diagnostics, and prognostics simultaneously.