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Figure 1 Clustering + MAC Structure.
In this article, an ultra-high-speed multiply-accumulate (MAC) structure is proposed.
The analysis method and theoretical results can be easily applied to other DSPs with MAC structure.
The analysis method and theoretical results can also be applied to the SEU-tolerant design of other On-Board DSPs with MAC structure, such as FFT and digital beamforming.
Based on the directional MAC structure in Section 3.1, network synchronization and control messages for the (m−1 -th transm−1 -th requestransmissioncasted in the m-th BP frequestsPNC.
Related works are presented in Section 2. We describe the system overview including directional MAC structure, transmission model, interference level, and problem overview in Section 3. In Section 4, the optimal MPMH-MRMC problem is formulated as an MILP.
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"MAC Superframe structure" section presents a classification of MAC Superframe structure.
The remainder of the article is structured as follows: in Section 2 we introduce IEEE 802.15.4 MAC superframe structure and the concepts of RED.
The BO is the interval between two successive beacons of the MAC Superframe structure whereas SO is the time duration of the active slots of the MAC Superframe structure.
Fig. 4 802.15.6 MAC Superframe structure.
Figure 2 IEEE 802.15.4 MAC superframe structure.
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