论文标题
前拟合的STIX可见性
Forward-fitting STIX visibilities
论文作者
论文摘要
Aima。确定通过光谱仪/望远镜成像X射线(Stix)在板上太阳能轨道器衡量的前向拟合可见性问题在同一问题上,在同一问题的情况下,在先前的硬X射线太阳能成像任务方面更具挑战性;确定用于Stix参数成像的有效优化方案。方法。本文介绍了用于正拟合Stix可见性的粒子群优化(PSO)算法,并比较了其相对于基于标准的基于标准的基于单纯形的优化算法的有效性,迄今为止,用于分析由Reuven Reuven Ramaty高能量的高能量太阳能光谱成像(RHESSI)所测量的可见性分析。该比较是通过考虑通过Rhessi和Stix测得的实验可见性以及通过考虑Stix信号形成模型产生的合成可见性的。结果。我们发现,基于PSO的参数成像方法与基于Rhessi可见性的单纯形方法一样可靠。但是,将PSO应用于Stix模拟和实验性可见性时,PSO明显更健壮。结论。标准确定性优化不足以使stix在角度平面中采样的几种可见性进行前进。因此,在太阳轨道X射线望远镜的情况下,必须引入一个更稳态的优化方案,以进行参数成像。我们在本文中介绍的基于PSO的前拟合程序被证明非常健壮和可靠,并且可以被视为在Stix上下文中参数成像的有效候选工具。
Aima. To determine to what extent the problem of forward fitting visibilities measured by the Spectrometer/Telescope Imaging X-rays (STIX) on-board Solar Orbiter is more challenging with respect to the same problem in the case of previous hard X-ray solar imaging missions; to identify an effective optimization scheme for parametric imaging for STIX. Methods. This paper introduces a Particle Swarm Optimization (PSO) algorithm for forward fitting STIX visibilities and compares its effectiveness with respect to the standard simplex-based optimization algorithm used so far for the analysis of visibilities measured by the Reuven Ramaty High Energy Solar Spectroscopic Imager (RHESSI). This comparison is made by considering experimental visibilities measured by both RHESSI and STIX, and synthetic visibilities generated by accounting for the STIX signal formation model. Results. We found out that the parametric imaging approach based on PSO is as reliable as the one based on the simplex method in the case of RHESSI visibilities. However, PSO is significantly more robust when applied to STIX simulated and experimental visibilities. Conclusions. Standard deterministic optimization is not effective enough for forward-fitting the few visibilities sampled by STIX in the angular frequency plane. Therefore a more sofisticated optimization scheme must be introduced for parametric imaging in the case of the Solar Orbiter X-ray telescope. The forward-fitting routine based on PSO we introduced in this paper proved to be significantly robust and reliable, and could be considered as an effective candidate tool for parametric imaging in the STIX context.