Circular designs for total effects under interference models
Xiangshun Kong, Xueru Zhang, Wei Zheng

TL;DR
This paper develops a flexible, hybrid approach to designing optimal circular interference experiments, accommodating various parameters and sizes, and provides practical guidelines for choosing between circular and noncircular designs.
Contribution
It introduces a hybrid method for identifying optimal circular designs under interference models, applicable to all design sizes and including explicit solutions for small cases.
Findings
Optimal designs are based on self-neighboring block sequences.
Explicit minimal sets are derived for small block sizes.
A hybrid approach handles large block sizes efficiently.
Abstract
This paper studies circular designs for interference models, where a treatment assigned to a plot also affects its neighboring plots within a block. For the purpose of estimating total effects, the circular neighbor balanced design was shown to be universally optimal among designs which do not allow treatments to be neighbors of themselves. Our study shows that self-neighboring block sequences are actually the main ingredient for an optimal design. Here, we adopt the approximate design framework and study optimal designs in the whole design space. Our approach is flexible enough to accommodate all possible design parameters, that is the block size and the number of blocks and treatments. This approach can be broken down into two main steps: the identification of the minimal supporting set of block sequences and the optimality condition built on it. The former is critical for reducing…
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Taxonomy
TopicsOptimal Experimental Design Methods · Advanced Multi-Objective Optimization Algorithms · Genetic and phenotypic traits in livestock
