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General hazard-type scaling of abandonment time distribution for a G/Ph+GI queue in the Halfin-Whitt heavy-traffic regime

机译:Halfin-Whitt重交通状态下G / Ph / n + GI队列的遗弃时间分布的一般危险类型标度

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We consider the diffusion approximation of a G/Ph queue with customer abandonment in the Halfin-Whitt heavy-traffic regime and extend the conventional locally Lipschitz hazard-type scaling of abandonment time distribution to a more general scaling in the study. Under that new scaling of abandonment, not only the non-locally Lipschitz hazard-type case such as the non-locally bounded hazard-rate scaling which has never been solved to date, but also a wider range of abandonment time distributions including the non-absolutely continuous ones becomes subject to the analysis of diffusion approximation. Due to the general character of our scaling scheme of abandonment time, the stochastic equation for the limit of C-tight, scaled, and centered customer-count processes contains a nonlinear drift term as the limit of abandonment-count process, which does not satisfy the local Lipschitz condition so that the continuous mapping method in the literature of this area is invalid in our case. Instead, applying the Girsanov transformation to the localized multidimensional equation satisfied by the limit of customer-count process in multiphase of service time, we show the uniqueness in law of the solution to establish the desired diffusion approximation.
机译:我们考虑在Halfin-Whitt重交通情况下,随着客户的放弃而产生的G / Ph / n队列的扩散近似,并将传统的本地Lipschitz危险类型的放弃时间分布的标度扩展到研究中的更一般的标度。在这种新的放弃尺度下,不仅非局部的Lipschitz危险类型案例(例如迄今为止尚未解决的非局部有界危险率缩放),而且更广泛的放弃时间分布范围,包括绝对连续的变得受扩散近似分析的影响。由于我们的放弃时间缩放方案的一般特征,C紧紧,缩放和居中客户计数过程的极限的随机方程包含非线性漂移项作为放弃计数过程的极限,这不能满足局部Lipschitz条件,因此在我们的情况下,该地区文献中的连续映射方法无效。取而代之的是,将Girsanov变换应用于在服务时间的多阶段中客户计数过程的限制所满足的局部多维方程,我们证明了建立所需的扩散近似的解法则的唯一性。

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