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Scapular muscle activity assessed in overhead movements can be measured reliably under maximum load conditions, though variability is dependent on the movement phase.
In order to enhances accuracy and convergence rate of the GSO, two strategies about the movement phase of GSO are proposed.
Although reasonable calculation models exist for the estimation of movement time (the time required for occupants to flow out of the building), time required for behaviours taking place before the movement phase, collectively known as pre-movement time, are poorly described and quantified.
In our design, we utilize a two-stage estimation method to determine the movement phase.
It is noticeable that, sternocleidomastoideus, Rectus Abdominis and Rectus Femoris muscles are active during the movement phase (concentric contraction).
The only objective is to provide cues to interpret the foregoing results because it has already been mentioned that there is on-line planning during the movement phase.
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The proposed two-stage integrated decision function is able to estimate the movement phases precisely.
Hence, the duration of the movement phases is also slightly different in the experiments conducted.
Speed and duration of all the movement phases were standardized with a metronome.
In order to adopt different rate adaptation strategies to every movement phase, the most critical issue is to accurately estimate the movement phases.
In this section, we present the result of the proposed rate adaption scheme assisted by the movement phases estimation.
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