Mathematical Model of Pest Control Using Different Release Rates of Sterile Insects and Natural Enemies

被引:7
作者
Bakhtiar, Toni [1 ]
Fitri, Ihza Rizkia [1 ]
Hanum, Farida [1 ]
Kusnanto, Ali [1 ]
机构
[1] IPB Univ, Dept Math, Bogor 16680, Indonesia
关键词
natural enemies; optimal control; pest control model; release rate; sterile insects; PREDATOR-PREY MODEL; DYNAMICS ANALYSIS;
D O I
10.3390/math10060883
中图分类号
O1 [数学];
学科分类号
0701 ; 070101 ;
摘要
In the framework of integrated pest management, biological control through the use of living organisms plays important roles in suppressing pest populations. In this paper, the complex interaction between plants and pest insects is examined under the intervention of natural enemies releases coupled with sterile insects technique. A set of nonlinear ordinary differential equations is developed in terms of optimal control model considering characteristics of populations involved. Optimal control measures are sought in such a way they minimize the pest density simultaneously with the control efforts. Three different strategies relating to the release rate of sterile insects and predators as natural enemies, namely, constant, proportional, and saturating proportional release rates, are examined for the attainability of control objective. The necessary optimality conditions of the control problem are derived by using Pontryagin maximum principle, and the forward-backward sweep method is then implemented to numerically calculate the optimal solution. It is shown that, in an environment consisting of rice plants and brown planthoppers as pests, the releases of sterile planthoppers and ladybeetles as natural enemies can deteriorate the pest density and thus increase the plant biomass. The release of sterile insects with proportional rate and the release of natural enemies with constant rate are found to be the most cost-effective strategy in controlling pest insects. This strategy successfully decreases the pest population about 35 percent, and thus increases the plant density by 13 percent during control implementation.
引用
收藏
页数:18
相关论文
共 53 条
[1]  
Abrol DP, 2014, INTEGRATED PEST MANAGEMENT: CURRENT CONCEPTS AND ECOLOGICAL PERSPECTIVE, pXI
[2]  
Ali Arif, 2017, Science International (Lahore), V29, P1261
[4]   Mathematical Modelling of the Sterile Insect Technique Using Different Release Strategies [J].
Ben Dhahbi, Anis ;
Chargui, Yassine ;
Boulaaras, Salah Mahmoud ;
Ben Khalifa, Sana ;
Koko, Waleed ;
Alresheedi, Faisal .
MATHEMATICAL PROBLEMS IN ENGINEERING, 2020, 2020
[5]   MATHEMATICAL STUDY OF A PEST CONTROL MODEL INCORPORATING STERILE INSECT TECHNIQUE [J].
Bhattacharyya, R. ;
Mukhopadhyay, B. .
NATURAL RESOURCE MODELING, 2014, 27 (01) :61-79
[6]   A control package revolving around the removal of single diseased banana stems is effective for the restoration of Xanthomonas wilt infected fields [J].
Blomme, Guy ;
Ocimati, Walter ;
Sivirihauma, Charles ;
Vutseme, Lusenge ;
Mariamu, Bumba ;
Kamira, Muller ;
van Schagen, Boudy ;
Ekboir, Javier ;
Ntamwira, Jules .
EUROPEAN JOURNAL OF PLANT PATHOLOGY, 2017, 149 (02) :385-400
[7]   Sterile Insect Technique (SIT) and Its Applications [J].
Bourtzis, Kostas ;
Vreysen, Marc J. B. .
INSECTS, 2021, 12 (07)
[8]   A modeling framework for biological pest control [J].
Colombo, Rinaldo M. ;
Rossi, Elena .
MATHEMATICAL BIOSCIENCES AND ENGINEERING, 2020, 17 (02) :1413-1427
[9]  
Crowder DW, 2007, J INSECT SCI, V7, DOI 10.1673/031.007.1501
[10]   Aphid performance and population development on their host plants is affected by weed-crop interactions [J].
Dahlin, Iris ;
Ninkovic, Velemir .
JOURNAL OF APPLIED ECOLOGY, 2013, 50 (05) :1281-1288