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The intention of this chapter is to provide with design considerations to help avoid potential network disasters.
The past few years have brought about some major network disasters, and even the most tried-and-true public networks have been susceptible.
A DoS/DDoS attack may result in network disasters due to the energy exhaustion of the nodes along the attacking path.
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This means that if the switches are compromised by an attacker and do not follow the order of the network manager, a huge network disaster will occur.
Some research applies SNA for analyzing the individual level of network in disasters, while others are more concerned with organizational issues.
Given the fragility of mobile networks during disasters, going without web access is a very real possibility.
For example, perpetrators of a man-provoked disaster may want to perform a resource exhaustion attack on the network supporting disaster recovery operations, so as to cut out legitimate users from the communications and increase the emergency impact.
Furthermore, restorative strategies are considered to increase the efficiency and robustness of the proposed relief network under disaster.
Hence, it is crucial to understand the vulnerability of optical backbone networks to disasters and design appropriate countermeasures.
Open image in new window Fig. 3 Network of disaster policy-making departments of Phase I (1949 1978) in China.
Open image in new window Fig. 9 Network of disaster policy-making departments of Phase III (2004 2008) in China.
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