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16 lines
630 B
TeX
16 lines
630 B
TeX
\subsection{Forward Kinematics (FK)}
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$\mat{T}_{WB_n}(\vec{\theta}) = \mat{T}_{WB_0} \mat{T}_{B_0B_1}(\theta_1) \cdots \mat{T}_{B_{n - 1}B_n}(\theta_n)$.\\
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For 2R system:
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${_W}\vec{t}_{WE} =$
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{\scriptsize
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$ \begin{bmatrix}
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L_1 \cos(\theta_1) + L_2 \cos(\theta_1 + \theta_2) \\
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L_1 \sin(\theta_1) + L_2 \sin(\theta_1 + \theta_2)
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\end{bmatrix}$\\
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}
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Similar for $n$R sys (more angles). Wspc $W$ $\theta_1, \theta_2 \in [-\pi, \pi]$.
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Last dim may be sum of angles. Jacobian: see \ref{sec:ms-lin}
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\shortdefinition[Singularity] Loss of deg of Freed. $\det(\mat{J}(\vec{\theta})) = 0$
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% TODO: Determinant computation
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