Network Coherence Time Matters - Interference Networks with Finite Precision CSIT and Perfect CSIR
Arash Gholami Davoodi, Syed A. Jafar
Abstract
Arash Gholami Davoodi, Syed A. Jafar
Abstract
This work obtains the first degrees of freedom (DoF) bound that is sensitive to network coherence time, i.e., coherence time in an interference network where all channels experience the same coherence patterns. This is accomplished by a novel adaptation of the aligned image sets bound, and settles various open problems noted previously by Naderi and Avestimehr and by Gou et al. For example, a necessary and sufficient condition is obtained for the optimality of 1/2 DoF per user in a partially connected interference network where the channel state information at the receivers (CSIR) is perfect, the channel state information at the transmitters (CSIT) is instantaneous but limited to finite precision, and the network coherence time is Tc = 1. The broader insight that emerges is that even with perfect CSIR and instantaneous finite precision CSIT, network coherence time matters, i.e., it has a DoF impact.
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This work obtains the first degrees of freedom (DoF) bound that is sensitive to network coherence time, i.e., coherence time in an interference network where all channels experience the same coherence patterns. This is accomplished by a novel adaptation of the aligned image sets bound, and settles various open problems noted previously by Naderi and Avestimehr and by Gou et al. For example, a necessary and sufficient condition is obtained for the optimality of 1/2 DoF per user in a partially connected interference network where the channel state information at the receivers (CSIR) is perfect, the channel state information at the transmitters (CSIT) is instantaneous but limited to finite precision, and the network coherence time is Tc = 1. The broader insight that emerges is that even with perfect CSIR and instantaneous finite precision CSIT, network coherence time matters, i.e., it has a DoF impact.
Key concepts: Coherence (philosophical gambling strategy), Coherence time, Interference (communication), Computer science, Upper and lower bounds, Channel state information, Channel (broadcasting), Degrees of freedom (physics and chemistry)