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The step input is bounded.
Again, the input that we consider is a step input.
The step input was 25 mg L− 1 PAM solution applied continuously for 129 PVs.
Using that model configuration, model parameters (element size, time step, frequency step, input pressure, etc).
The time response for the step input verifies the analysis mentioned above.
Single-step precision positioning and uniform response to different sizes of step input are achieved.
Now let's carry out the convolution this time with an input which is a rectangular pulse instead of a step input.
That constant will be proportional to the area under the impulse response, because of the fact that we're convolving with a step input.
So the input that we're considering is a step input, which I show here, and the impulse response that we will convolve this with is a decaying exponential.
Two types of external loading P t) are considered: a step input and a simple harmonic input.
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Under the assumption of uniformly quantized measurements, the paper addresses the one-step input design problem for static gains.
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