首页> 外文会议>SPIE Astronomical Telescopes + Instrumentation Conference >Athena X-ray Integral Field Unit on-board Event Processor: Analysis of performance of two triggering algorithms
【24h】

Athena X-ray Integral Field Unit on-board Event Processor: Analysis of performance of two triggering algorithms

机译:雅典娜X射线积分现场单元板载事件处理器:分析两个触发算法的性能

获取原文

摘要

In the framework of the ESA Athena mission, the X-ray Integral Field Unit (X-IFU) micro-calorimeter will provide unprecedented spatially resolved high-resolution X-ray spectroscopy. For this purpose, the on-board Event Processor (EP) must initially trigger the current pulses induced by the X-ray photons hitting the detector to proceed with a reconstruction which provides the arrival time, spatial location and energy of each event. The current event triggering design is implemented in two stages: one initial trigger of the low-pass filtered derivative of the raw data to extract records containing pulses and a second stage performing a fine detection to look for all the pulses in the record. In order to establish the current baseline detection technique of the EP in the X-IFU instrument, an assessment of the capabilities of different triggering algorithms is required, both in terms of performance (detection efficiency) and computational load, as processing will take place on-board. We present a comparison of two detection algorithms, the Simplest Threshold Crossing (STC) and the model-dependent Adjusted Derivative (AD). The analysis also evaluates the (possible) negative effect of different instrumental scenarios as a reduced sampling rate. The evaluations point out that the simplest algorithm STC shows worse performance than AD for the smallest pulses separations and the lowest secondary energies. Nevertheless, checking the expected number of such pulses combinations in a typical bright source observation, we conclude that it does not have impact in the science. Moreover, the savings in the computational resources and calibration needs make STC a valuable option.
机译:在ESA雅典娜任务的框架内,X射线积分现场单元(X-IFU)微热量计将提供前所未有的空间分辨的高分辨率X射线光谱仪。为了这个目的,所述车载事件处理器(EP)必须首先触发由X射线光子撞击检测器继续进行,其提供到达时间,每个事件的空间位置和能量的重构中感应的电流脉冲。当前事件触发设计以两个阶段实现:所述低通滤波的衍生物的原始数据中的一个初始触发到含有脉冲和执行精细检测来寻找记录中的所有脉冲的第二阶段提取记录。为了建立在X IFU仪器的EP的当前基线检测技术中,需要的不同的触发算法的能力的评估,无论是在性能(检测效率)和计算负荷方面,由于处理将于-木板。我们提出的两个检测算法的比较,最简单的阈限(STC)和型号依赖调整衍生物(AD)。该分析还可用于评估(可能的)负的不同工具的场景作为降低的采样速率的效果。评价指出比AD为最小的脉冲分离和最低二次能源性能,最简单的算法示出了STC更糟。然而,检查一个典型的亮源观察这种脉冲组合的预期数量,我们认为它没有在科学的影响。此外,在计算资源和标准化需求,储蓄使STC一个有价值的选择。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号