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As the modulation depth of the electronic code division multiple access based control signal is increased, the required optical tap power is reduced.
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The resulting optical tap power that is required for the successful monitoring of the electronic code division multiple access based control signals are compared with that of the case without the amplifier.
The lower bound of this range is usually determined by the successful recovery of electronic code division multiple access based control signal while the upper bound is determined by the successful recovery of payload data.
Based on this assumption, the control signal is determined as the sum of sinusoidal signals designed by using the Fourier coefficients calculated from a fundamental period of noise, then it is applied to the next period.
In this strategy, the control signal is tuned online from the knowledge base and the fuzzy inference, which request fewer sources and has two rule base sets.
The control signal is generated from microcontroller.
The control signal is applied to perturb the airspeed parameter.
The transmission of control signals is based on a novel adaptive event-triggered communication scheme, where the adaptive threshold is dependent on a dynamic error of the system rather than a predetermined constant as the one in the existing results.
The possibilities of using vibratory control signal were analyzed.
Based on an appropriate monitoring function, a switching scheme for some control signals is proposed.
The design and accuracy of simple airflow estimators that are based on actuator control signals are investigated.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com