Recent Work
Parent: Center for Pervasive Communications and Computing
eScholarship stats: Breakdown by Item for May through August, 2026
| Item | Title | Total requests | Download | View-only | %Dnld |
|---|---|---|---|---|---|
| 68w38300 | B-ISDN (Broadband Integrated Services Digital Network) | 327 | 49 | 278 | 15.0% |
| 1zk7f9wn | Virtual Signaling of CSIT via Non-Signaling Assistance | 175 | 67 | 108 | 38.3% |
| 83p769jm | On the Capacity of Distributed Quantum Storage | 171 | 97 | 74 | 56.7% |
| 0112p0hf | Interference Alignment and Degrees of Freedom of the Two-User X Channel with an Instantaneous Relay | 160 | 50 | 110 | 31.3% |
| 4tp227hz | The Capacity of Classical Summation over a Quantum MAC with Arbitrarily Distributed Inputs and Entanglements | 150 | 50 | 100 | 33.3% |
| 1c17p6zq | Degrees of Freedom of Rank-Deficient MIMO Interference Networks | 140 | 40 | 100 | 28.6% |
| 8nh0m0qm | Exploring Aligned-Images Bounds:Robust Secure GDoF of 3-to-1 Interference Channel | 137 | 50 | 87 | 36.5% |
| 2nf4s7hf | Degrees of Freedom of the Interference Channel with a Cognitive Helper | 136 | 52 | 84 | 38.2% |
| 44b1c5hm | The Capacity of 3 User Linear Computation Broadcast | 129 | 48 | 81 | 37.2% |
| 0010s3qd | Two-User Multicast Networks with Variable-Length Limited Feedback | 126 | 58 | 68 | 46.0% |
| 8fx6x83p | Generalized Cross Subspace Alignment Codes for Coded Distributed Batch Matrix Multiplication | 126 | 51 | 75 | 40.5% |
| 66b461fd | Topological Interference Management through Index Coding | 123 | 37 | 86 | 30.1% |
| 0s5031z6 | On the Synergistic Benefits of Reconfigurable Antennas and Partial Channel Knowledge for the MIMO Interference Channel | 120 | 48 | 72 | 40.0% |
| 01h7r8v4 | On the Capacity of Erasure-prone Quantum Storage with Erasure-prone Entanglement Assistance | 119 | 45 | 74 | 37.8% |
| 7b6397vh | Capacity of Summation over a Symmetric Quantum Erasure MAC with Partially Replicated Inputs | 107 | 49 | 58 | 45.8% |
| 9wg5b87s | Can Non-Signaling Assistance Increase the Degrees of Freedom of a Wireless Network? | 106 | 26 | 80 | 24.5% |
| 7p82981q | On the Utility of Quantum Entanglement for Joint Communication and Instantaneous Detection | 105 | 34 | 71 | 32.4% |
| 9qc3343h | Degrees of Freedom of the Two-Way Relay MIMO Interference Channel | 104 | 34 | 70 | 32.7% |
| 0qh0h88p | On the Capacity of Locally Decodable Codes | 103 | 37 | 66 | 35.9% |
| 8m88g65t | Unlocking Exponential and Unbounded Robust Gains in Shannon Capacity of Classical Multiple Access Channels with Causal CSIT via Quantum Entanglement Assistance | 102 | 35 | 67 | 34.3% |
| 5fc7z8vm | Beyond TIN: GDoF of K-User Interference Channel with Successive Interference Cancellation and Power Control | 99 | 38 | 61 | 38.4% |
| 46q137s2 | On the Capacity of Vector Linear Computation over a Noiseless Quantum Multiple Access Channel with Entangled Transmitters | 97 | 41 | 56 | 42.3% |
| 4b2338qk | The Ergodic Capacity of Interference Networks | 97 | 22 | 75 | 22.7% |
| 6035r788 | Blind Interference Alignment for MapReduce: Exploiting Side-information with Reconfigurable Antennas | 97 | 25 | 72 | 25.8% |
| 72b5q2sf | On Optimal Ergodic Interference Alignment | 95 | 45 | 50 | 47.4% |
| 44p655jp | N-Sum Box: An Abstraction for Linear Computation over Many-to-one Quantum Networks | 91 | 24 | 67 | 26.4% |
| 6t14c361 | On Optimality of Linear Interference Alignment for the Three-User MIMO Interference Channel with Constant Channel Coefficients | 91 | 27 | 64 | 29.7% |
| 19d0q7jx | Multiscale Image Quality Estimation | 90 | 32 | 58 | 35.6% |
| 5gt0b9v1 | $X$-secure $T$-private Information Retrieval from MDS Coded Storage with Byzantine and Unresponsive Servers | 90 | 44 | 46 | 48.9% |
| 0qn447j4 | Towards an Extremal Network Theory – Robust GDoF Gain of Transmitter Cooperation over TIN | 88 | 40 | 48 | 45.5% |
| 9511q6pf | "Using Instantaneous Normalized Receive SNR for Diversity Gain Calculation | 86 | 27 | 59 | 31.4% |
| 02w92010 | Feedback improves the generalized degrees of freedom of the strong interference channel | 85 | 32 | 53 | 37.6% |
| 3gc1z8kn | Degrees of Freedom of 2-user and 3-user Rank-Deficient MIMO Interference Channels | 85 | 34 | 51 | 40.0% |
| 6cp9n6s1 | Multiple-Antenna Interference Cancellation and Detection for Two Users Using Quantized Feedback | 85 | 29 | 56 | 34.1% |
| 7cg6q1gw | Degrees of Freedom of the Cellular System with Relays and Partial CSIT | 83 | 25 | 58 | 30.1% |
| 6z00q9qn | Short-term Performance Limits of MIMO Systems with Side Information at the Transmitter | 81 | 23 | 58 | 28.4% |
| 8cj3m85d | Interference Mitigation Using Asynchronous Transmission and Sampling Diversity | 80 | 31 | 49 | 38.8% |
| 0mt1c026 | Quantum Entanglement Assistance Improves the Capacity and Activates the Zero-Error Capacity of Classical Channels with Causal CSIT | 79 | 27 | 52 | 34.2% |
| 41h6v54h | Optimality of Simple Layered Superposition Coding in the 3 User MISO BC with Finite Precision CSIT | 79 | 29 | 50 | 36.7% |
| 5vc8f7h0 | The Capacity of Private Computation | 78 | 27 | 51 | 34.6% |
| 4242x608 | Robust Optimality of TIN under Secrecy Constraints | 77 | 27 | 50 | 35.1% |
| 8hs1d0tt | Interference Cancellation at the Relay for Multi-User Wireless Cooperative Networks | 76 | 33 | 43 | 43.4% |
| 548776qj | Exploiting Heterogeneous Channel Coherence Intervals for Blind Interference Alignment | 75 | 33 | 42 | 44.0% |
| 70d1v0jt | On the Necessity of Non-Shannon Information Inequalities for Storage Overhead Constrained PIR and Network Coding | 75 | 27 | 48 | 36.0% |
| 1z226604 | Correction to “Multicast Networks with Variable-Length Limited Feedback” | 73 | 25 | 48 | 34.2% |
| 28s196nf | VOFDM Broadband Wireless Transmission and Its Advantages | 69 | 24 | 45 | 34.8% |
| 9cv1135b | Transmitter Cooperation under Finite Precision CSIT: A GDoF Perspective | 68 | 33 | 35 | 48.5% |
| 475040fd | Diversity Results for DSTC-ICRec and DSTC Joint-user ML decoding | 66 | 37 | 29 | 56.1% |
| 8j84z28b | On the Generic Capacity of K-user Symmetric Linear Computation Broadcast | 66 | 32 | 34 | 48.5% |
| 0mf232ft | GDoF of Interference Channel with Limited Cooperation under Finite Precision CSIT | 63 | 20 | 43 | 31.7% |
Note: Due to the evolving nature of web traffic, the data presented here should be considered approximate and subject to revision. Learn more.