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Measuring mortality heterogeneity with multi-state models and interval-censored data

机译:使用多状态模型和间隔检查数据测量死亡率异质性

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摘要

In this paper, our aim is to measure mortality rates which are specific to individual observable factors when these can change during life. The study is based on longitudinal data recording marital status and socio-professional features at census times, therefore the observation scheme is interval-censored since individual characteristics are only observed at isolated dates and transition times remain unknown. To this aim, we develop a parametric maximum likelihood estimation procedure for multi-state models that takes into account both interval-censoring and reversible transitions. This method, inspired by recent advances in the statistical literature, allows us to capture characteristic-specific mortality rates, in particular to recover the mortality compensation law at high ages, but also to capture the age pattern of characteristics changes. The dynamics of several population compositions is addressed, and allows us to give explanations on the pattern of aggregate mortality, as well as on the impact on typical life insurance products. Particular attention is devoted to characteristics changes and parameter uncertainty that are both crucial to take into account.
机译:在本文中,我们的目标是测量在生命中可能发生变化的各个可观察因素的死亡率。该研究基于在人口普查时记录婚姻状况和社会职业特征的纵向数据,因此观察方案是间隔检查的,因为仅在孤立的日期才观察到个体特征,而过渡时间仍然未知。为此,我们为多状态模型开发了一个参数最大似然估计程序,该程序同时考虑了间隔检查和可逆转换。这种方法受到统计文献最新进展的启发,使我们能够捕获特定于特征的死亡率,特别是恢复高年龄段的死亡率补偿律,还可以捕获特征变化的年龄模式。解决了几种人口构成的动态问题,使我们能够对总死亡率的模式以及对典型寿险产品的影响进行解释。特别要注意的是特性变化和参数不确定性,这两者都是至关重要的。

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