bibliography: => #+BIBLIOGRAPHY: here
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: [Stewart Platforms]({{< relref "stewart_platforms" >}}), [Vibration Isolation]({{< relref "vibration_isolation" >}}), [Cubic Architecture]({{< relref "cubic_architecture" >}})
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Reference
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: ([Hauge and Campbell 2004](#orge4a516e))
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: ([Hauge and Campbell 2004](#org186272b))
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Author(s)
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: Hauge, G., & Campbell, M.
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@@ -24,20 +24,20 @@ Year
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- Vibration isolation using a Stewart platform
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- Experimental comparison of Force sensor and Inertial Sensor and associated control architecture for vibration isolation
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<a id="org59ac043"></a>
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<a id="org37bf22a"></a>
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{{< figure src="/ox-hugo/hauge04_stewart_platform.png" caption="Figure 1: Hexapod for active vibration isolation" >}}
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**Stewart platform** (Figure [1](#org59ac043)):
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**Stewart platform** (Figure [1](#org37bf22a)):
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- Low corner frequency
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- Large actuator stroke (\\(\pm5mm\\))
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- Sensors in each strut (Figure [2](#org59c0ee0)):
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- Sensors in each strut (Figure [2](#org8b97871)):
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- three-axis load cell
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- base and payload geophone in parallel with the struts
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- LVDT
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{{< figure src="/ox-hugo/hauge05_struts.png" caption="Figure 2: Strut" >}}
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@@ -64,7 +64,7 @@ With \\(|T(\omega)|\\) is the Frobenius norm of the transmissibility matrix and
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- single strut axis as the cubic Stewart platform can be decomposed into 6 single-axis systems
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<a id="org5b75feb"></a>
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{{< figure src="/ox-hugo/hauge04_strut_model.png" caption="Figure 3: Strut model" >}}
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@@ -136,11 +136,12 @@ And we find that for \\(u\\) and \\(y\\) to be an acceptable pair for high gain
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- The performance requirements are met
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- Good robustness
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{{< figure src="/ox-hugo/hauge04_obtained_transmissibility.png" caption="Figure 4: Experimental open loop (solid) and closed loop six-axis transmissibility using the geophone only controller (dotted), and combined geophone/load cell controller (dashed)" >}}
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## Bibliography {#bibliography}
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<a id="orge4a516e"></a>Hauge, G.S., and M.E. Campbell. 2004. “Sensors and Control of a Space-Based Six-Axis Vibration Isolation System.” _Journal of Sound and Vibration_ 269 (3-5):913–31. <https://doi.org/10.1016/s0022-460x(03)>00206-2.
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<a id="org186272b"></a>Hauge, G.S., and M.E. Campbell. 2004. “Sensors and Control of a Space-Based Six-Axis Vibration Isolation System.” _Journal of Sound and Vibration_ 269 (3-5):913–31. <https://doi.org/10.1016/s0022-460x(03)>00206-2.
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