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Method and system for improved implementation of maintenance routines in a productive system

机译:用于改进生产系统中维护例程的实现的方法和系统

摘要

The presently described embodiments relate to improving system productivity where maintenance purge routines are required through use of a digital front end (DFE) job scheduler. This approach utilizes knowledge of future jobs to maximize productivity. So, even if a low coverage area job is being processed, and a purge routine is scheduled, the purge routine may be avoided. This is achieved by projecting the system evolution over a future time horizon and determining the schedule of toner purge events (a non productive dead cycle) to minimize a cost function that penalizes the purge event (dead cycling and material loss should be minimized) and the deviation of average toner resident time in the sump from some desired set point of range. In this regard, knowledge that a high coverage area job is downstream and average toner residient time may be advantageously used to effectively perform the purge itself while in productive mode. The system gains knowledge of whether low coverage area jobs or high coverage area jobs are pending by using information stored within the print job file (e.g., a page description language job file). For example, a page description language (PDL) file typically includes information on the area coverage trajectory over time. This will allow a system to generate a predictive model which can constantly recalculate statistics based on knowledge of currently running jobs, new jobs or a change in customer criteria.
机译:当前描述的实施例涉及通过使用数字前端(DFE)作业调度器来提高需要维护清除例程的系统生产率。这种方法利用对未来工作的了解来最大化生产率。因此,即使正在处理低覆盖区域的作业并计划了清除程序,也可以避免清除程序。通过在未来的时间范围内预测系统的发展并确定墨粉清除事件的时间表(非生产性死循环),以最小化惩罚清除事件的成本函数(应将死循环和材料损失降至最低),从而实现这一目标。集水槽中平均墨粉停留时间与某个所需设定范围的偏差。就这一点而言,在生产模式下,高覆盖面积作业在下游并且平均调色剂残留时间的知识可以被有利地用于有效地执行自身清洗。系统通过使用存储在打印作业文件(例如,页面描述语言作业文件)中的信息来获得低覆盖区域作业还是高覆盖区域作业待决的知识。例如,页面描述语言(PDL)文件通常包括有关随时间推移的区域覆盖轨迹的信息。这将使系统生成一个预测模型,该模型可以根据当前正在运行的作业,新作业或客户标准的更改来不断地重新计算统计信息。

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