论文标题
传感器校正过滤器的粒子群
Particle swarming of sensor correction filters
论文作者
论文摘要
减少地震活动对悬浮光学运动的影响对于地面引力检测器的运行至关重要。在增加地震活性,低频地面翻译和倾斜的期间,导致晚期的ligo天文台失去了“锁”,从而减少了其占空比周期。本文使用现代的全球优化算法来帮助设计用于控制活动平台的“传感器校正”过滤器的设计。结果表明,粒子群算法将近似的成本功能最小化,该成本功能函数近似平台之间的差异RMS速度可以产生控制过滤器,该控制滤波器在控制带宽中大多数频率的性能都比当前安装的频率更好。这些测试是使用Ligo Hanford天文台地震仪器的训练数据和HAM-ISI(水平访问模块内部地震隔离)平台的模拟进行的。这些结果表明,生产控制过滤器的新方法已准备好在Ligo上使用。该过滤器是在Ligo的Hanford天文台实施的,并使用结果数据来完善成本功能。
Reducing the impact of seismic activity on the motion of suspended optics is essential for the operation of ground-based gravitational wave detectors. During periods of increased seismic activity, low-frequency ground translation and tilt cause the Advanced LIGO observatories to lose `lock', reducing their duty cycles. This paper applies modern global-optimisation algorithms to aid in the design of the `sensor correction' filter, used in the control of the active platforms. It is shown that a particle swarm algorithm that minimises a cost-function approximating the differential RMS velocity between platforms can produce control filters that perform better across most frequencies in the control bandwidth than those currently installed. These tests were conducted using training data from the LIGO Hanford Observatory seismic instruments and simulations of the HAM-ISI (Horizontal Access Module Internal Seismic Isolation) platforms. These results show that new methods of producing control filters are ready for use at LIGO. The filters were implemented at LIGO's Hanford Observatory, and use the resulting data to refine the cost function.