Butterfly Optimization Algorithm

The Butterfly Optimization Algorithm is a nature-inspired metaheuristic for solving complex engineering optimization problems by modeling how butterflies search for food and mates. It represents candidate solutions as butterflies whose perceived fragrance depends on an objective-function value, while movement is guided by fragrance intensity and switching between global and local search; a sensory-modality parameter controls how strongly butterflies respond. This population-based approach can optimize continuous or discrete design variables without requiring gradient information. Engineers apply it to tasks such as structural design, parameter estimation, scheduling, energy management, and control-system tuning, although performance depends on suitable parameter settings and problem-specific evaluation.

Butterfly Optimization Algorithm - Related Videos

Research

JoVE Journal - Biology

Spatial Multiobjective Optimization of Agricultural Conservation Practices using a SWAT Model and an Evolutionary Algorithm

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Cited by 7 •

2012

This work demonstrates an integration of a water quality model with an optimization component utilizing evolutionary algorithms to solve for optimal (lowest-cost) placement of agricultural conservation practices for a specified set of water quality improvement objectives. The solutions are generated using a multi-objective approach, allowing for explicit quantification of tradeoffs.

In situ Protocol for Butterfly Pupal Wings Using Riboprobes

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Cited by 8 •

2007

In order to examine gene expression in the pupal wing tissue of Bicyclus anynana, we present an optimized protocol for in situ hybridizations using riboprobes. We also provide guidelines for the further optimization of this protocol for use in pupal wings of other Lepidopteran species.

In Vivo Intracellular Recording of Photoreceptor Cell Spectral Sensitivity in a Butterfly

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2025

This video demonstrates the procedure for in vivo intracellular recording of photoreceptor cells in the eye of a butterfly and determining the spectral sensitivity of individual cell types. This technique enables the study of sensitivities of individual photoreceptor cells to different light stimuli.

Education

JoVE Core - Introduction to Psychology

Trial and Error and Algorithm

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2025

A problem-solving strategy is a plan of action used to find a solution. Different strategies have distinct action plans. Trial and error involves trying different solutions until one works. For instance, to fix a broken printer, you might check ink levels, ensure the paper tray isn't jammed, and verify the printer's connection to your laptop. This method can be time-consuming but is commonly used. Thomas Edison, for example, used trial and error to find a suitable filament for the light bulb,...

Management of Respiratory Motion Artefacts in 18F-fluorodeoxyglucose Positron Emission Tomography using an Amplitude-Based Optimal Respiratory Gating Algorithm

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Cited by 2 •

2020

Amplitude-based optimal respiratory gating (ORG) effectively removes respiratory-induced motion blurring from clinical 18F-fluorodeoxyglucose (FDG) positron emission tomography (PET) images. Correction of FDG-PET images for these respiratory motion artefacts improves image quality, diagnostic and quantitative accuracy. Removal of respiratory motion artefacts is important for adequate clinical management of patients using PET.

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