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Step 4: Map the backup links and nodes.
Map the backup node onto it and map the corresponding backup links.
Then map the backup node onto it and map the corresponding backup links.
Step 4: Map the backup nodes and links of the enhanced newly generated VN.
Traverse every backup node that needs to be mapped in descending order of resource demands and map the backup nodes and corresponding links onto the physical network.
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It maps the backup nodes and links to the physical network to ensure the survivability of virtual nodes while also realizing the nodal and link resource sharing among spontaneously arriving VNs and the resource sharing in VNs.
Figure 8 depicts the backup nodes' mapping costs in the GG-SVNM, GG-SMVNM, and EVPF algorithms for multiple VNs. Figure 9 shows the physical resource costs for mapping the backup links of VNs using the EVPF, GG-SVNM, and GG-SMVNM algorithms, respectively.
Then compute the mapping costs of the backup virtual nodes and relevant backup links.
2. The backup node mapping cost: the total expenses of using physical node resources to host the backup virtual nodes.
3. The backup link mapping cost: the total expenses of using physical link resources to host the backup links.
In comparison, the backup link mapping is much more complicated and the probability of sharing resources among backup links of different VNs is much higher.
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Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com