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Precision animal feed formulation: An evolutionary multi-objective approach

机译:精密动物饲料制剂:进化多目标方法

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摘要

Most livestock producers aim for optimal ways of feeding their animals. Conventional algorithms approach optimum feed formulation by minimizing feed costs while satisfying constraints related to nutritional requirements of the animal. The optimization process needs to be performed every time a nutritional requirement is changed due to the nonlinear relationship between the relaxation of the different nutritional requirements and the feed cost. Consequently, decision-making becomes a time-consuming trial and error process. In addition, the nonlinear relationship changes depending on the type of materials used, their nutritional compositions and costs as well as the animal's nutritional requirements. Therefore, in this work, we formulated a multi-objective feed formulation problem comprising of two objects - a) minimizing feed cost and b) minimizing deviation from the specified requirements. The problem is solved using a population-based evolutionary multi-objective optimization algorithm (NSGA-II) that results in an optimal set of comprised solutions in a single run. The availability of the entire set of comprised solutions facilitates the understanding of the relationship between different nutritional requirements and cost, thus leading to a more efficient decision-making process. We demonstrated the applicability of the proposed method by performing experimental simulations on several cases of dairy and beef cattle feed formulation.
机译:大多数牲畜生产者旨在实现喂养动物的最佳方式。传统算法通过最小化进料成本,同时满足与动物的营养要求相关的限制来接近最佳进料配方。由于在不同营养需求和饲料成本的放松之间的非线性关系,每次由于非线性关系而改变营养需求,所需进行优化过程。因此,决策成为耗时的试验和错误过程。此外,非线性关系根据所用材料的类型,营养成分和成本以及动物的营养要求而变化。因此,在这项工作中,我们制定了一种多目标饲料配方问题,包括两个对象 - a)最小化饲料成本和b)从指定要求最小化偏差。使用基于人口的进化多目标优化算法(NSGA-II)来解决问题,其导致单次运行中的最佳组成的解决方案。整个组成的解决方案的可用性有助于了解不同营养需求和成本之间的关系,从而导致更有效的决策过程。我们通过对几种乳制品和肉牛饲料配方进行了实验模拟来证明了所提出的方法的适用性。

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