This code computes the energy consumption in the downlink of a single-cell multi-user MIMO system in which the base station (BS) makes use of N antennas to communicate with K single-antenna user equipments (UEs). The UEs move around in the cell according to a random walk mobility model.
☆35Jun 22, 2015Updated 11 years ago
Alternatives and similar repositories for energy_consumption_in_MU_MIMO_with_mobility
Users that are interested in energy_consumption_in_MU_MIMO_with_mobility are comparing it to the libraries listed below. We may earn a commission when you buy through links labeled 'Ad' on this page.
Sorting:
- This is a code package is related to the follow scientific article: Andrea Pizzo, Daniel Verenzuela, Luca Sanguinetti and Emil Björnson,…☆14May 18, 2018Updated 8 years ago
- This is a code package is related to the follow scientific article: Andrea Pizzo, Alessio Zappone and Luca Sanguinetti, "Solving Energy E…☆29Dec 7, 2018Updated 7 years ago
- Simulation code for “Intelligent Reflecting Surface vs. Decode-and-Forward: How Large Surfaces Are Needed to Beat Relaying?,” by Emil Bj…☆116Jul 25, 2024Updated 2 years ago
- Physical Layer Simulation of an IEEE 802.11 OFDM MIMO System☆36Jul 14, 2014Updated 12 years ago
- ☆13Nov 28, 2020Updated 5 years ago
- 1-Click AI Models by DigitalOcean Gradient • AdDeploy popular AI models on DigitalOcean Gradient GPU virtual machines with just a single click. Zero configuration with optimized deployments.
- Simulation code for “RIS-Assisted High-Speed Communications with Time-Varying Distance-Dependent Rician Channels,” by K. Wang, CT. Lam, a…☆14Sep 29, 2024Updated last year
- Simulation code for "Optimal Energy-Efficient Transmit Beamforming for Multi-User MISO Downlink," IEEE Trans. Signal Process., vol. 63, n…