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Systems for Green Operations. Management of Aircraft Energy SGO Technology Development & Validation of Electrical Aircraft Systems Stakeholders ► Management.

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Presentation on theme: "Systems for Green Operations. Management of Aircraft Energy SGO Technology Development & Validation of Electrical Aircraft Systems Stakeholders ► Management."— Presentation transcript:

1 Systems for Green Operations

2 Management of Aircraft Energy SGO Technology Development & Validation of Electrical Aircraft Systems Stakeholders ► Management of Aircraft Energy (MAE) aims at developing electrical system technologies and energy management functions to reduce aircraft fuel consumption through Development of more-electrical system architectures and equipment Validation and maturation of electrical technologies by large scale ground and flight demonstrations Member and Partner Know-How from previous R&T projects Electrical Equipment Thermal Management Equipment Load Management Functions

3 Skin HX MAE developments for Large Aircraft Electrical ECS Electrical WIPS Engine Nacelle Sys Electrical Power Center Wiring System Ice Detection Load Management Vapour Cycle cooling system Generators

4 Electrical WIPS Electrical ECS Electrical Architecture Optimization Tool MAE developments for Regional Aircraft

5 Generator, PEM Electrical Tail Rotor Drive HEMAS MAE developments for Rotorcraft

6 WP2.3.2 Converter, Rectifier WP2.3.5 Switching Components WP2.3.2 Generators WP2.3.4 Electrical WIPS MAE developments for Business Aircrafts

7 February 12th, 2013 SGO WP2 meeting 7 SGO – Flight test demonstrations on Airbus A320 (2015)

8 Management of Trajectory and Mission Electrical taxiing Green FMS Robustness to Weather ► Management of Trajectory and Mission (MTM) aims at reducing the environmental impact of flights through trajectory optimisation on ground and in flight Validation in Ground Simulator & Flight tests

9 MultiCriteria Departure Procedure (MCPD) MCPD : CO2, Nox, Noise reductions in departure phase

10 Adaptive Increased GlideSlope (AIGS) AIGS : Noise reduction during final approach

11 Mission optimisation OBJECTIVES  fast computation of partial or complete flight trajectories optimized with respect to different objectives and constraints. 11 On-board trajectory optimisation as a decision support tool

12 Smart Operation on Ground  Provide innovative solution for Green Aircraft Operation on Ground Autonomous taxi on ground without use of engines to reduce fuel burn Low noise brake cooling fan Up to 4% fuel burn reduction for short-haul flights with electrical taxiing

13 Thank you for your attention


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