While driverless transport systems for in-house logistics are already commercially available, larger autonomous vehicles for off-road applications often have a military background. Agricultural applications have so far only been available in the form of driver assistance systems for tractors and self-propelled vehicles or as relatively small field robots for inventory analysis and mapping tasks which do not have a high mechanical power requirement and which have a low vehicle mass. The Chair of Agricultural Systems and Technology at the TU Dresden, in cooperation with Raussendorf Maschinen- und Geratebau, Osnabruck University of Applied Sciences and Hochschule Geisenheim University, has now developed the elWObot autonomous electrically driven plantation robot for orchards and vineyards.
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机译:尽管用于内部物流的无人驾驶运输系统已经商业化,但是用于越野应用的大型自动驾驶汽车通常具有军事背景。迄今为止,农业应用仅以拖拉机和自行式车辆的驾驶员辅助系统的形式提供,或者以相对较小的田间机器人的形式进行,以用于库存分析和制图任务,而这些要求并没有很高的机械动力要求,并且车辆质量较低。德累斯顿工业大学的农业系统和技术主席与奥斯纳布吕克应用科技大学的Raussendorf Maschinen- und Geratebau和Hoisschule Geisenheim大学合作,现已开发出eWObot自主电动果园和葡萄园种植机器人。
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