Sentence examples for tangential error from inspiring English sources

Exact(5)

We first present a controller design for biaxial feed drive systems that enables assignment of controller gains, for reducing the error component orthogonal to the desired contour curve, independent of the tangential error component.

Table 5 Relative uncertainty on Y measurements due to placement tolerances of strain gauges Placement error Uncertainty % Max Min Mean Radial error Δr 1.02 0.28 0.57 Tangential error Δε 0.88 0.12 0.42 Inclination angle Δα 0.60 −1.45 0.86 Total 2.54 −1.05 0.2.54

In a highly predictable circular tracking task, tangential error variability and mean phase error point to the individual's ability to sustain the state of synchronization between the external stimulus and the internally generated predictive drive.

The radial error corresponds to the deviation in the radius of the gaze trajectory from the circular trajectory of the target, and the tangential error is proportional to the phase error.

With a precise method of eye position recording, large variability in the instantaneous radius of gaze trajectory (radial error variability) must indicate instability in the subject's spatial control, while large variability in the instantaneous angular phase (tangential error variability) must indicate a compound effect of instabilities in spatial and temporal control.

Similar(53)

The SDs of radial and tangential errors, mean phase error, angular smooth pursuit gain, and RMS errors were computed from the combination of the two test trials included in each test sequence.

To show the potentials of the procedure, I present some design examples of positive and negative lenses where the tangential power error is virtually eliminated for all gaze directions (up to 40°).

The drawbacks of this strategy are on the one hand the increased ΔV requirement, since a tangential perigee velocity error has by then been amplified by a factor of approximately eight, and on the other hand, the risk of not being able to perform the manoeuvre at day two, further increasing the ΔV requirements or even losing the mission due to the limited thrust capability.

When the gaze trajectory was redrawn in a polar coordinate reference frame defined relative to the target (Fig.  1b), variability in gaze position error, tangential (parallel) to the target trajectory, also became evident.

Therefore, although smooth pursuit gains and RMS positional errors are good measures for characterizing the overall accuracy of matching the gaze velocity or position to the target, the SD of positional errors in the tangential direction and mean phase error are better suited for characterizing the temporal dynamics of visuomotor synchronization.

These large saccades not only caused large gaze positional errors in both radial and tangential directions, but also contributed to an increase in gaze positional error variability in these directions.

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