Control of the State of Agrocenoses Based on Earth Remote Sensing Data

IF 0.6 4区 物理与天体物理 Q4 ASTRONOMY & ASTROPHYSICS
I. M. Mikhailenko, V. N. Timoshin
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引用次数: 0

Abstract

The purpose of this work is to present new results of using Earth remote sensing data in the problem of managing agricultural technology in real time. The main reason for the low efficiency of modern precision farming technologies is the lack of an adequate theory of agricultural technology management. At the same time, when creating such a theory, one should take into account the fact that the object of management, which is agricultural technology, includes agrocenoses, in which, in addition to sowing a crop, weeds are also included. Failure to take this factor into account leads to a deterioration in management efficiency, a decrease in sowing productivity and an over expenditure of mineral fertilizers and herbicides. In the presented work, for the first time, a complete theory of managing the state of agrocenoses is presented. This theory makes it possible to obtain a given yield with the required reliability. Such management is formed on the basis of estimates of the parameters of the state of sowing crops and weeds, formed according to remote sensing data in real time. The presented theory is based on new mathematical models of parameters of the state of agricultural crops, the soil environment, and weeds, as well as models of the relationship of these parameters with remote sensing data. Mineral fertilizers, herbicides, and irrigation are control factors in agricultural technology. Naturally, the parameters of technological operations are the doses of applied mineral fertilizers and herbicides, as well as irrigation rates. These operations are carried out at the onset of certain phenological phases of sowing crops. Remote sensing data are entered precisely at such moments of time, and the parameters of the state of crops and weeds are estimated on their basis. The presented theory is based on classical control principles used in modern dynamic systems. According to the proposed theory, a specialized software package was developed, with the help of which the control system was tested on the example of spring wheat sowing.

Abstract Image

基于地球遥感数据的农田状态控制
摘要 这项工作的目的是介绍利用地球遥感数据解决农业技术实时管理问题的新成果。现代精准农业技术效率低下的主要原因是缺乏适当的农业技术管理理论。同时,在创建这种理论时,应考虑到管理对象,即农业技术,包括农业杂草,其中除了播种作物外,还包括杂草。如果不考虑这一因素,就会导致管理效率下降、播种生产率降低以及矿物肥料和除草剂的过度使用。在本著作中,首次提出了管理农田杂草状态的完整理论。通过这一理论,可以可靠地获得既定产量。这种管理是根据实时遥感数据对播种作物和杂草状态参数的估计而形成的。所提出的理论基于农作物、土壤环境和杂草状态参数的新数学模型,以及这些参数与遥感数据的关系模型。矿物肥料、除草剂和灌溉是农业技术的控制因素。当然,技术操作的参数是矿物肥料和除草剂的施用剂量以及灌溉率。这些操作都是在作物播种的特定物候期开始时进行的。遥感数据正是在这些时刻输入的,作物和杂草的状态参数也是在此基础上估算的。所提出的理论基于现代动态系统中使用的经典控制原理。根据所提出的理论,开发了一个专用软件包,并以春小麦播种为例对控制系统进行了测试。
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来源期刊
Cosmic Research
Cosmic Research 地学天文-工程:宇航
CiteScore
1.10
自引率
33.30%
发文量
41
审稿时长
6-12 weeks
期刊介绍: Cosmic Research publishes scientific papers covering all subjects of space science and technology, including the following: ballistics, flight dynamics of the Earth’s artificial satellites and automatic interplanetary stations; problems of transatmospheric descent; design and structure of spacecraft and scientific research instrumentation; life support systems and radiation safety of manned spacecrafts; exploration of the Earth from Space; exploration of near space; exploration of the Sun, planets, secondary planets, and interplanetary medium; exploration of stars, nebulae, interstellar medium, galaxies, and quasars from spacecraft; and various astrophysical problems related to space exploration. A chronicle of scientific events and other notices concerning the main topics of the journal are also presented.
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