Departamento Electrónica, Universidad Técnica Federico Santa María (UTFSM), Av. España 1680, Valparaíso 2390123, Chile.
Advanced Center for Electrical and Electronic Engineering, AC3E, Gral. Bari 699, Valparaíso 2390136, Chile.
Sensors (Basel). 2021 Nov 18;21(22):7675. doi: 10.3390/s21227675.
Filtering and smoothing algorithms are key tools to develop decision-making strategies and parameter identification techniques in different areas of research, such as economics, financial data analysis, communications, and control systems. These algorithms are used to obtain an estimation of the system state based on the sequentially available noisy measurements of the system output. In a real-world system, the noisy measurements can suffer a significant loss of information due to (among others): (i) a reduced resolution of cost-effective sensors typically used in practice or (ii) a digitalization process for storing or transmitting the measurements through a communication channel using a minimum amount of resources. Thus, obtaining suitable state estimates in this context is essential. In this paper, Gaussian sum filtering and smoothing algorithms are developed in order to deal with noisy measurements that are also subject to quantization. In this approach, the probability mass function of the quantized output given the state is characterized by an integral equation. This integral was approximated by using a Gauss-Legendre quadrature; hence, a model with a Gaussian mixture structure was obtained. This model was used to develop filtering and smoothing algorithms. The benefits of this proposal, in terms of accuracy of the estimation and computational cost, are illustrated via numerical simulations.
滤波和平滑算法是开发决策策略和参数识别技术的关键工具,这些技术可应用于经济学、金融数据分析、通信和控制系统等多个研究领域。这些算法用于根据系统输出的顺序可用噪声测量值来获得系统状态的估计值。在实际系统中,由于(包括)以下原因,噪声测量值可能会严重丢失信息:(i)在实践中通常使用的具有成本效益的传感器分辨率降低,或(ii)通过使用最少资源的通信信道对测量值进行数字化存储或传输。因此,在这种情况下获得合适的状态估计值至关重要。本文开发了高斯和滤波和平滑算法,以处理受到量化影响的噪声测量值。在这种方法中,量化输出给定状态的概率质量函数由一个积分方程描述。该积分通过使用高斯-勒让德求积法进行近似,从而得到具有高斯混合结构的模型。该模型用于开发滤波和平滑算法。通过数值模拟说明了该方法在估计精度和计算成本方面的优势。