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Self-propelled forage harvester for processing an agricultural work process

机译:自推式饲料收集机,用于处理农业作业

摘要

The present invention relates to a self-propelled forage harvester (1) for processing an agricultural process within a process chain, comprising a feed device (3), a chaff device (6) and an aftertreatment device (10), and a driver assistance system (20) Control of the work organs according to at least one predefinable work process strategy, which is directed to the fulfillment of at least one quality criterion (33, 34, 35), wherein the driver assistance system (20) has a memory (24) for storing data and a computing device (23) for processing the data stored in the memory (24), wherein the driver assistance system (20) has a graphical user interface (19) by means of which at least a part of the work process strategy can be predefined, whereby a degree of fulfillment of competing quality criteria (33, 34; 33, 35) by means of the graphical user interface (19) is adjustable, wherein as a respective quality criterion "compressibility" (34) or "grain digestion" (35) a quality criterion "area performance" (33) is competing and that these mutually interdependent quality criteria "compressibility" (34) and " Area performance "(33) or" grain digestion "(35) and" area performance "(33) can be visualized by means of the graphical user interface (19).
机译:自走式草料收获机(1),用于在过程链中处理农业过程,包括进料装置(3),谷壳装置(6)和后处理装置(10)以及驾驶员辅助装置系统(20)根据至少一种可预定的工作过程策略来控制工作器官,该策略针对至少一个质量标准(33、34、35)的实现,其中驾驶员辅助系统(20)具有存储器(24)用于存储数据,以及用于处理存储在存储器(24)中的数据的计算设备(23),其中驾驶员辅助系统(20)具有图形用户界面(19),通过该图形用户界面,至少一部分可以预先定义工作过程策略,从而可以调节通过图形用户界面(19)达到竞争质量标准(33、34、33、35)的程度,其中作为相应的质量标准“可压缩性”(34 )或“谷物消化”(35)质量标准“区域性能”(33)相互竞争,并且这些相互依赖的质量标准“可压缩性”(34)和“区域性能”(33)或“谷物消化”(35)和“区域性能”(33)可以通过以下方式可视化图形用户界面(19)。

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