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We have evaluated the EDDK scheme in terms of computation overhead, communication overhead, and storage overhead.
The total of overhead communication reduced up to 88.89 %, due to the integration of 6LoWPAN architecture and 6GLAD architecture.
The performance is measured with peak-signal-to-noise-ratio of received video, data overhead, communication delay, number of lost video frames, and decoding frame rate.
This process is centralized, since it involves feedback and overhead communication whose load scales linearly with the number of transmitters in the network.
Zhou et al. in [48] addressed the problem of high-power consumption generated due to overhead communication between different CR users.
Table 1 The performance comparison between DTO-MROD and LIKE-DORE Algorithm Computational overhead Communication overhead DTO-MROD O(N·max{|I i,nei |·|V j |}) O(N) LIKE-DORE O(N 3) O(N).
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Therefore worker sensors tradeoff computation overhead with communication overhead.
Extending the scheme requires more overhead and communication than for the secure aggregation.
The overhead of communication and the complexity of computing are also analyzed.
The proposed scheme reveals a reduction in overhead in communication by using the mathematical theorems compared to CTrust scheme [58].
Although the benefits are quite apparent, the associated overhead and communication cost has to be considered, evaluated, and reported.
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