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UNIVERSITY OF CALIFORNIA Los Angeles - Users - UCLA

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eleasing. I used a coated stainless cable for its flexibility and corrosion<br />

resistance.<br />

Figure 49.<br />

A moving device sketch<br />

Figure 51. Equations were used to<br />

get step numbers to run motors<br />

and transform them to the real<br />

world situation.<br />

[Example Code]<br />

Distances<br />

Figure 50.<br />

Ideas for movements<br />

distance_1[i]=sqrt(2*sq(L)2*L*(map(s,0,MAXsp,0,L))*<br />

(cos(radians(d))+sin(radians(d)))+sq(map(s,0,MAXsp,0,L)));<br />

// i=station, l= a radius of a aluminum sheet, MAXsp= a maximum wind speed<br />

Step Numbers<br />

intmotor_1=(int)(200*(dis_1(sqrt(2)*L))/PI*D);<br />

// for a 200step motor<br />

J.KIM_A LANDSCAPE <strong>OF</strong> EVENTS 50

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