A Collaborative Network Security Transmission Method
A technology of secure transmission and collaborative network, which is applied in the field of secure transmission of collaborative network based on branch handover and resident merge technology, can solve problems such as heavy burden on the system and affect the stable transmission of system data, so as to reduce the complexity of implementation, improve security, Conducive to the effect of stable transmission
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Embodiment 1
[0033] Such as figure 1 As shown, this embodiment records a collaborative network security transmission method, and the method includes the following steps:
[0034] S1: If the previous frame uses a direct link for data communication, go to step S2; if the previous frame uses a relay link, go to step S3;
[0035] S2: Estimate the channel parameters of the direct link in the current frame, and judge whether the direct link can provide secure communication. If yes, the branch of the direct link resides and enters step S4; otherwise, perform branch switching to estimate the channel parameters of the current frame relay link. Channel parameters, enter step S4;
[0036] S3: Estimate the channel parameters of the current frame relay link, and judge whether the relay link can provide secure communication. If so, the relay link branch resides and enters step S4; otherwise, branch switching is performed to estimate the direct link of the current frame channel parameter of the road, e...
Embodiment 2
[0048] In the collaborative network security transmission method described in this embodiment, under the Matlab simulation environment, a Monte Carlo computer is used to simulate the security interruption probability of the method proposed in the present invention. In the simulation experiment, the link between the system nodes is subject to Rayleigh fading, the average strength of the direct link is 0.5, and the average strength of the two-hop relay link is 1, the link between the source node and the relay node and the eavesdropping node The average intensity is all 0.1. The additive Gaussian white noise at each node of the system has a mean of zero and a variance of 1. The safe data transfer rate of the system is R S is 0.1bps, the threshold T of branch switching is The sending power at the source node is P, and the sending power at the relay node is P R . Considering the randomness of the channel and noise, run 10 independently 9 cycle and average the results.
[004...
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