The Case for Distributed Engine Control in Turbo-Shaft Engine Systems

VFS-F65-000366

5/27/2009

Authors
Abstract
Content

The turbo-shaft engine is an important propulsion system used to power vehicles on land, sea, and in the air. As the power plant for many high performance helicopters, the characteristics of the engine and control are critical to proper vehicle operation as well as being the main determinant to overall vehicle performance. When applied to vertical flight, important distinctions exist in the turbo-shaft engine control system due to the high degree of dynamic coupling between the engine and airframe and the affect on vehicle handling characteristics. In this study, the impact of engine control system architecture is explored relative to engine performance, weight, reliability, safety, and overall cost. Comparison of the impact of architecture on these metrics is investigated as the control system is modified from a legacy centralized structure to a more distributed configuration. A composite strawman system which is typical of turbo-shaft engines in the one to two-thousand horsepower class is described and used for comparison. The overall benefits of these changes to control system architecture are assessed. The availability of supporting technologies to achieve this evolution is also discussed.

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DOI
https://doi.org/10.4050/VFS-F65-000366
Citation
Smith, B., Storey, W., Culley, D., and Paluszewski, P., "The Case for Distributed Engine Control in Turbo-Shaft Engine Systems," AHS 65th Annual Forum, Grapevine, Texas, May 27-29, 2009, Grapevine, Texas, May 27, 2009, https://doi.org/10.4050/VFS-F65-000366.
Additional Details
Publisher
Published
5/27/2009
Product Code
VFS-F65-000366
Content Type
Technical Paper
Language
English