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A hybrid green energy-based framework with a multi-objective optimization approach for optimal frost prevention in horticulture

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Title: A hybrid green energy-based framework with a multi-objective optimization approach for optimal frost prevention in horticulture
Authors: Atam, E
Abdelmaguid, TF
Keskin, ME
Kerrigan, EC
Item Type: Working Paper
Abstract: In this paper, first we propose a novel hybrid renewable energy-based solution for frost prevention in horticulture applications involving active heaters. Then, we develop a multi-objective robust optimization-based formulation to optimize the distribution of a given number of active heaters in a given large-scale orchard. The objectives are to optimally heat the orchard by the proposed frost prevention system and to minimize the total length of the energy distribution pipe network (which is directly related to the installation cost and the cost of energy losses during energy transfer). Next, the resulting optimization problem is approximated using a discretization scheme. A case study is provided to give an idea of the potential savings using the proposed optimization method compared to the result from a heuristic-based design, which showed a 24.13% reduction in the total pipe length and a 54.29% increase in frost prevention.
Issue Date: 27-Apr-2021
URI: http://hdl.handle.net/10044/1/88778
Publisher: arXiv
Copyright Statement: © 2021 The Author(s). This work is published with CC BY-NC-ND license.
Keywords: eess.SY
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math.OC
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Publication Status: Published
Appears in Collections:Electrical and Electronic Engineering



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