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We would like to sincerely thank our two anonymous referees for their valuable input to improve various aspects of the paper. Their detailed comments on each aspect of the paper helped us in presenting this material in a clear and succinct manner.
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Agents can be designed with one of the following priorities ranked higher than the others: 1. Agents want as much of the resource as possible (individual rationality). 2. Agents want a portion of the resource whose value is greater than or equal to that of any other agent (envy-freeness). 3. Agents want portions whose value is greater than a certain threshold (egalitarianism).
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Our statement holds if priority #2 overrides the other two.
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We do not provide any concrete references to the criteria as we encountered only passing discussions on these criteria in the existing literature.
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The moving-knife procedure is so-called, because it is assumed that a knife moves smoothly over a cake demarcating an increasingly larger portion until an agent calls ‘Stop’, to indicate the portion is satisfactory to the agent.
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We use the comparison ‘discrete vs. continuous’ for characterizing procedures. This comparison could also apply to the discussion in Section 5.1 on resources. However, they carry different semantics in the two places. In order to reduce confusion, we use the term ‘divisibility’ when discussing resources.
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The Selfridge–Conway procedure is mentioned by Brams and Taylor in their book Fair Division: From Cake-Cutting to Dispute Resolution, on page 116. Regarding their source for the procedure, they state, ‘Such a procedure was found about 1960 by John L. Selfridge and, later but independently, by John H. Conway […] Although never published by either, the procedure was quickly and widely disseminated by Richard K. Guy and others’.
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An excellent exposition of how agent preferences can be represented is discussed by Chevaleyre et al. (2006). The reader is referred to their paper for further details on the topic of agent preferences. We briefly enumerate the types of agent preferences in this paper for the sake of completeness. In addition, we add a few other types to round off this section.
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Copyright © Cambridge University Press 2009 2009 Cambridge University Press
| Karthik Iyer, Michael N. Huhns. 2009. Negotiation criteria for multiagent resource allocation. The Knowledge Engineering Review. 24:4 doi: 10.1017/S0269888909000204 |





