Outer Bounds for the Interference Channel with a Cognitive Relay
arXiv:1004.4944
Abstract
In this paper, we first present an outer bound for a general interference channel with a cognitive relay, i.e., a relay that has non-causal knowledge of both independent messages transmitted in the interference channel. This outer bound reduces to the capacity region of the deterministic broadcast channel and of the deterministic cognitive interference channel through nulling of certain channel inputs. It does not, however, reduce to that of certain deterministic interference channels for which capacity is known. As such, we subsequently tighten the bound for channels whose outputs satisfy an "invertibility" condition. This second outer bound now reduces to the capacity of this special class of deterministic interference channels. The second outer bound is further tightened for the high SNR deterministic approximation of the Gaussian interference channel with a cognitive relay by exploiting the special structure of the interference. We provide an example that suggests that this third bound is tight in at least some parameter regimes for the high SNR deterministic approximation of the Gaussian channel. Another example shows that the third bound is capacity in the special case where there are no direct links between the non-cognitive transmitters.
References in corpus (1)
Cited by in corpus (8)
- K-user Interference Channels: General Outer Bound and Sum-capacity for Certain Gaussian Channels
- The Capacity of the Semi-Deterministic Cognitive Interference Channel and its Application to Constant Gap Results for the Gaussian Channel
- Capacity Bounds for a Class of Interference Relay Channels
- A New Sum-Rate Outer Bound for Interference Channels with Three Source-Destination Pairs
- Cooperative Compute-and-Forward
- Interference as Noise: Friend or Foe?
- On the Capacity Region of the Two-user Interference Channel with a Cognitive Relay
- Capacity to within 3 bits for a class of Gaussian Interference Channels with a Cognitive Relay