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Advanced LIGO two-stage twelve-axis vibration isolation and positioning platform. Part 2: Experimental investigation and tests results

机译:先进的LIGO两级十二轴隔振和定位平台。第2部分:实验研究和测试结果

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摘要

This paper presents the results of the past seven years of experimental investigation and testing done on the two-stage twelve-axis vibration isolation platform for Advanced LIGO gravity waves observatories. This five-ton two-and-half-meter wide system supports more than a 1000 kg of very sensitive equipment. It provides positioning capability and seismic isolation in all directions of translation and rotation. To meet the very stringent requirements of Advanced LIGO, the system must provide more than three orders of magnitude of isolation over a very large bandwidth. It must bring the motion below 10^(−11) m/√Hz at 1 Hz and 10^(−12) m/√Hz at 10 Hz. A prototype of this system has been built in 2006. It has been extensively tested and analyzed during the following two years. This paper shows how the experimental results obtained with the prototype were used to engineer the final design. It highlights how the engineering solutions implemented not only improved the isolation performance but also greatly simplified the assembly, testing, and commissioning process. During the past two years, five units have been constructed, tested, installed and commissioned at each of the two LIGO observatories. Five other units are being built for an upcoming third observatory. The test results presented show that the system meets the motion requirements, and reach the sensor noise in the control bandwidth.
机译:本文介绍了过去7年在高级LIGO重力波观测站的两级十二轴隔振平台上进行的实验研究和测试的结果。这个五吨重,两米半的系统支持1000公斤以上的非常敏感的设备。它在平移和旋转的所有方向上提供定位能力和地震隔离。为了满足高级LIGO的非常严格的要求,系统必须在很大的带宽上提供三个以上数量级的隔离。它必须使运动在1 Hz下低于10 ^(− 11)m /√Hz,在10 Hz时低于10 ^(− 12)m /√Hz。该系统的原型已于2006年建成。在接下来的两年中,已对该系统进行了广泛的测试和分析。本文展示了如何利用原型获得的实验结果来设计最终设计。它着重介绍了如何实施工程解决方案,不仅提高了隔离性能,而且大大简化了组装,测试和调试过程。在过去的两年中,两个LIGO天文台分别建造,测试,安装和调试了五个单元。正在为即将到来的第三个天文台建造另外五个单位。给出的测试结果表明,该系统满足运动要求,并在控制带宽内达到传感器噪声。

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