论文标题
视网膜激光治疗的状态和参数估计
State and parameter estimation for retinal laser treatment
论文作者
论文摘要
足够的治疗性视网膜激光照射需要适应局部吸收。这会导致耗时的治疗,因为需要连续调整激光功率,以避免因温度过低或过高而导致的不足和过度治疗。闭环控制可以通过温度测量来克服这一负担。为了允许模型预测控制方案,需要估算当前状态和依赖点的吸收。在本文中,我们彻底比较了移动范围估计器(MHE)和扩展的Kalman滤波器(EKF)设计,以进行关节状态和参数估计。我们考虑两种不同的情况,即一个或两个未知吸收系数的估计。对于一个未知参数,两个估计器的性能非常相似。对于两个未知参数,我们发现MHE在估计开始时的主动参数约束受益,而在沉降时间之后,只要参数位于所考虑的参数边界内,则两个估计器都会再次执行非常相似。
Adequate therapeutic retinal laser irradiation needs to be adapted to the local absorption. This leads to time-consuming treatments as the laser power needs to be successively adjusted to avoid under- and overtreatment caused by too low or too high temperatures. Closed-loop control can overcome this burden by means of temperature measurements. To allow for model predictive control schemes, the current state and the spot-dependent absorption need to be estimated. In this paper, we thoroughly compare moving horizon estimator (MHE) and extended Kalman filter (EKF) designs for joint state and parameter estimation. We consider two different scenarios, the estimation of one or two unknown absorption coefficients. For one unknown parameter, both estimators perform very similar. For two unknown parameters, we found that the MHE benefits from active parameter constraints at the beginning of the estimation, whereas after a settling time both estimators perform again very similar as long as the parameters are inside the considered parameter bounds.