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Procedures of soil farming allowing reduction of compaction

机译:允许减少压实的土壤耕作程序

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Evaluation of new technologies using guidance systems is very important and can help producers with choosing the right equipment for their applications. Without using satellite navigation during field operations, there is a tendency for passes to overlap. That results in waste of fuel and pesticides, longer working times and also environmental damage. When utilising satellite guidance for field operations, there is a close connection with controlled traffic farming (CTF) as well. CTF is currently a quite quickly developing farming system based on fixed layout of machinery passes across a field. Tracks precisely set out for a machine's tyres in the field could be a tool for minimising soil compaction risk which is another threat to the environment. The purpose of this paper was to evaluate the accuracy of currently available guidance systems for agricultural machines. Real pass-to-pass errors (omissions and overlaps) in a field were measured. Consequently, comparison between observed guidance systems was made regarding final working accuracy. Further, intensity of machinery passes, percentage of wheeled area and repeated passes in fields were monitored. These measurements were made in fields under real operating conditions using a conventional tillage system with ploughing and also a conservation tillage system, both systems with randomly organized traffic. Finally, the same parameters were monitored in fields where fixed machinery tracks were used for all operations and passes but only under a conservation tillage system. Pass-to-pass accuracy was measured for the evaluation of different guidance systems. Size of missed areas or overlaps was evaluated statistically. Concerning intensity of machinery passes and total field area affected by machinery passes, the following facts were found out. The experiments with randomized traffic showed a significant difference of the parameters mentioned above between a conventional tillage system with ploughing and a conservation tillage system. Wheeled area was 86 and 64%, respectively which proves benefits of conservation tillage. The experiments with a fixed track system showed that the total run-over area by machinery tyres decreased even more (up to 31%) in comparison to randomized traffic in a field (only fields under conservation tillage system were monitored and evaluated). The following statements based on our results can be made. The navigation and therefore possibility for better accuracy of machinery passes in fields together with permanent machinery tracks utilization could help with soil condition improvement and also energy savings which would result from that. The CTF system will help with further development of a system for soil compaction protection which is currently a real necessity.
机译:使用制导系统对新技术进行评估非常重要,可以帮助生产商选择适合其应用的设备。在野外作业期间不使用卫星导航,通行证有重叠的趋势。这导致燃料和农药浪费,更长的工作时间以及环境破坏。当利用卫星制导技术进行野外作业时,与可控交通耕作(CTF)也有紧密的联系。 CTF目前是一个发展迅速的耕作系统,它基于跨田地的固定机械布局。在野外为机器轮胎精确设置的履带可能是使土壤压实风险最小化的工具,土壤压实风险是对环境的另一种威胁。本文的目的是评估当前可用的农业机械制导系统的准确性。测量场中的实际通过误差(遗漏和重叠)。因此,对观察到的制导系统进行了最终工作精度的比较。此外,还监测了机械通过的强度,带轮面积的百分比以及田间重复通过的情况。这些测量是在实际操作条件下的田野中使用具有耕作功能的传统耕作系统以及保护性耕作系统进行的,这两个系统都是随机组织的流量。最后,在使用固定机器轨道进行所有操作和通过但仅在保护性耕作系统下进行的田地中,对相同参数进行了监视。测量通过精度,以评估不同的制导系统。错过的区域或重叠的大小进行了统计评估。关于机械通过的强度和受机械通过影响的总场面积,发现以下事实。随机流量实验表明,上述传统耕作耕作系统和保护性耕作系统之间的参数存在显着差异。轮耕面积分别为86%和64%,证明了保护性耕作的好处。固定轨道系统的实验表明,与田间的随机交通相比(仅对保护性耕作制度下的田地进行监测和评估),机械轮胎的总行驶面积减少甚至更多(最多31%)。可以根据我们的结果作出以下陈述。导航以及提高田间机器通过精度的可能性以及永久性机器轨道的使用可以帮助改善土壤状况,并由此节省能源。 CTF系统将有助于进一步开发土壤压实保护系统,目前这是真正的必要。

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