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An efficient soil penetration strategy for explorative robots inspired by plant root circumnutation movements

机译:一种有效的土壤渗透策略,用于植物根热量运动启发的探索机器人

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This paper presents a comparative analysis in terms of energy required by an artificial probe to penetrate soil implementing two different strategies: a straight penetration movement and a circumnutation, which is an oscillatory movement performed by plant roots. The role of circumnutations in plant roots is still debated. We hypothesized that circumnutation movements can help roots in penetrating soil, and validated our assumption by testing the probe at three distinct soil densities and using various combinations of circumnutation amplitudes and periods for each soil. The comparison was based on the total work done by the system while circumnutating at its tip level with respect to that shown by the same system in straight penetration. The total energy evaluation confirmed an improvement obtained by circumnutations up to 33%. We also proposed a fitting model for our experimental data that was used to estimate energy needed by the probe to penetrate soil at different dimensions and circumnutation amplitudes. Results showed the existence of a trade-off among penetration velocity, circumnutation period, and amplitude toward an energy consumption optimization, expressed by the lead angle of the helical path that should stay in the range between 46 degrees and 65 degrees. Moreover, circumnutations with appropriate amplitude (similar to 10 degrees) and period (similar to 80 s) values were more efficient than straight penetration also at different probe tip dimensions, up to a threshold diameter (from 2 mm to 55 mm). Based on the obtained results, we speculated that circumnutations can represent a strategy used by plant roots to reduce the pressure and energy needed to penetrate soil. The translation of this biological feature in robotic systems will allow improving their energetic efficiency in digging tasks, and thus open new scenarios for use in search and rescue, environmental monitoring, and soil exploration.
机译:本文提出了人工探针所需的能量方面的比较分析,以穿透实施两种不同的策略:直接渗透运动和线圈,这是由植物根部进行的振荡运动。电流在植物根系中的作用仍在讨论。我们假设线圈典型运动可以帮助渗透土壤,并通过在三个不同的土壤密度下测试探针并使用各种土壤的各种组合来验证我们的假设。比较基于系统完成的总工作,同时在其尖限上相对于直接穿透的相同系统所示的尖限度。总能源评估证实,通过循环获得的改善高达33%。我们还提出了一种拟合模型,用于我们的实验数据,用于估计探针所需的能量,以渗透不同尺寸和线性幅度的土壤。结果表明,渗透速度,线速,朝向能耗优化的幅度之间的折衷所存在,由应保持在46度和65度的范围内的螺旋路径的引线角度表示。此外,具有适当幅度(类似于10度)和周期(类似于80秒)值的电流比在不同的探针尖端尺寸上比直接穿透更有效,直至阈值直径(从2mm到55mm)。基于所得的结果,我们推测了植物根源可以代表植物根源使用的策略,以减少渗透土壤所需的压力和能量。这种在机器人系统中的这种生物特征的翻译将允许在挖掘任务中提高他们的能量效率,从而开辟用于搜索和救援,环境监测和土壤勘探的新情景。

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