Distribution method based on parallel mechanism insensitive to identity
An allocation method and a sensitive technology, applied in resource allocation, program control design, instruments, etc., to achieve the effects of improving economic benefits, improving computing efficiency, and solving unfair resource allocation
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Embodiment 1
[0038] An allocation method based on an identity-insensitive parallel mechanism, comprising the following steps:
[0039] step (1) and step (2), figure 1 In is each Agent's preference ranking for the favorite items in his heart, according to their respective preferences. Each Agent reports its favorite item at the same time. When multiple Agents choose the same item at the same time, then these Agents will randomly determine which Agent will get the item by drawing lots with equal probability. Then continue until all items have been dispensed.
[0040] image 3 in, a i (k) represents the item reported by Agent i, O k Indicates the set of items selected in k rounds, Indicates that in k rounds, o 1 Selected by two Agents at the same time, Indicates that in k rounds, o 4 Selected by an Agent and so on, under the Borda scoring function, r1 (o 1 )=1, g B (r 1 (o 1 ))=5, r 1 (o 2 )=2, g B (r 1 (o 2 ))=4, r 1 (o 3 )=5, g B (r 1 (o 5 )) = 1, and but in th...
Embodiment 2
[0044] exist figure 2 It can be seen that the selection order of each Agent π=1·2·3·3·2, under the Borda scoring function, in fact in unknown case,
[0045]
[0046] It can be seen from Examples 1 and 2 that the identity-insensitive parallel mechanism allocation method has better advantages in economic benefits and social equality than the sequential mechanism allocation method. For a more detailed comparison, please refer to Figure 4 and Figure 5 .
[0047] Result simulation:
[0048] Through the above examples and Figure 4 , Figure 5 It can be seen from the results that, whether under utilitarianism or egalitarianism, the identity-insensitive parallel mechanism distribution method has better advantages in economic efficiency and social equality than the sequential mechanism distribution method.
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