精准农业中的模型预测控制综述

IF 6.3 Q1 AGRICULTURAL ENGINEERING
Erion Bwambale , Joshua Wanyama , Thomas Apusiga Adongo , Etienne Umukiza , Romain Ntole , Sylvester R. Chikavumbwa , Davis Sibale , Zechariah Jeremaih
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引用次数: 0

摘要

在先进技术和数据驱动决策的推动下,精准农业已成为应对全球粮食需求、资源限制和可持续发展挑战的变革性方法。在此背景下,模型预测控制(MPC)作为一种强大的控制策略,能够通过预测和预期控制行动优化农业生产流程,因而备受关注。本综述全面探讨了 MPC 在精准农业中的基本原理和应用。综述首先概述了 MPC 的原理、配方和优化技术,强调了其预测性和适应性。随后,文章深入探讨了 MPC 在精准农业中的各种应用,包括作物生长和产量优化、病虫害管理以及自主机械和机器人技术。此外,还探讨了 MPC 与精准农业机械的集成及其在自主耕作系统中的作用。成功案例和案例研究强调了 MPC 在现实世界中的应用,展示了其对作物产量、资源利用和经济可行性的积极影响。此外,节水、减少化学品用量和提高农产品质量等效益也证明了多用途植保在可持续农业实践中的重要意义。虽然 MPC 具有众多优势,但综述也讨论了其面临的挑战,如计算复杂性、模型不确定性和传感器可靠性。综述最后强调了 MPC 在推动精准农业迈向更可持续、更高效、技术更先进的未来方面的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A review of model predictive control in precision agriculture
Precision agriculture, driven by advanced technologies and data-driven decision-making, has emerged as a transformative approach to address global food demand, resource constraints, and sustainability challenges. In this context, Model Predictive Control (MPC) has garnered significant attention as a powerful control strategy capable of optimizing farming processes through predictive and anticipatory control actions. This review comprehensively explores the fundamentals and applications of MPC in precision agriculture. The review begins with an overview of MPC's principles, formulation, and optimization techniques, emphasizing its predictive and adaptable nature. Subsequently, it delves into the diverse applications of MPC in precision agriculture, including crop growth and yield optimization, pest and disease management, and autonomous machinery and robotics. The integration of MPC with precision agriculture machinery and its role in autonomous farming systems are also explored. Success stories and case studies highlight real-world applications of MPC, showcasing its positive impact on crop yields, resource utilization, and economic viability. Additionally, demonstrated benefits such as water conservation, reduced chemical usage, and improved produce quality attest to the significance of MPC in sustainable farming practices. While MPC offers numerous advantages, the review also discusses challenges, such as computational complexity, model uncertainty, and sensor reliability. The review concludes by underscoring MPC's potential in driving precision agriculture towards a more sustainable, efficient, and technologically advanced future.
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