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Izvestiya SFedU
Engineering sciences
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ISSN 1999-9429 print
ISSN 2311-3103 online
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  • STUDYING OF A FORCE EQUALIZATION ALGORITHM FOR TWO ACTUATORS SIMULTANEOUSLY TURNING ASIDE THE FLIGHT CONTROL SURFACE OF NARROW-BODY CIVIL AIRCRAFT

    A.S. Alekseenkov, Е. V. Erofeev, A.I. Steblinkin, A.D. Timofeeva
    2022-03-02
    Abstract ▼

    Some civil aircraft assume two actuators simultaneously turning aside the flight control surface
    (rudder, in some cases aileron or elevator). Thus resulting in onset of the force fighting (mutual
    loading force). There are several ways to reduce the mutual loading force. One of them is to insert
    specific force equalization algorithm in actuators steering. This article deals with effectiveness of
    force equalization algorithm as well as its influence on system “2 active actuators - elevator”. Mathematic model of two actuators on elevator has been formed and tested by the developed testing method
    that reproduces the most severe operation conditions. There are several nonlinearities which is
    contained in mathematic model: sleeve-travel physical limits, nonlinear effects of fluid foil, rod-travel
    physical limits and attachment rigidity. Force equalization algorithm comprises a pressure differential
    feedback loop with PID regulator. The results show that force equalization algorithm is highly
    efficient (mutual loading force has been reduced over than 90%) in mode test without external load.
    However, in test mode with external load it is necessary to introduce a limitation on the magnitude of
    the corrective signal so as decrease the rod drop to level specified in terms of reference. Algorithm
    has no effect on stability margin of the system. In conclusion, results of this study could also be useful
    to expand the test program for two actuators simultaneously turning aside the flight control surfaces
    to further simplify the implementation of the force equalization algorithm.

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