Joint Spatial Multiplexing and Transmit Diversity in MIMO Ad Hoc Networks
Fadhil Firyaguna, Ana C. O. Christ\'ofaro, \'Everton A. L. Andrade,, Tiago Bonfim, Marcelo M. Carvalho

TL;DR
This paper evaluates the performance of MIMO ad hoc networks using transmit diversity and spatial multiplexing, proposing a joint operation scheme that adapts MIMO configurations based on SINR to improve throughput, delay, and fairness.
Contribution
It introduces a joint MIMO operation scheme for ad hoc networks that dynamically selects the best MIMO mode based on SINR, enhancing network performance over individual schemes.
Findings
Joint MIMO operation improves throughput and fairness.
Adaptive MIMO mode selection based on SINR enhances performance.
Proposed modifications to IEEE 802.11 DCF enable joint MIMO operation.
Abstract
This paper investigates the performance of MIMO ad hoc networks that employ transmit diversity, as delivered by the Alamouti scheme, and/or spatial multiplexing, according to the Vertical Bell Labs Layered Space-Time system (V-BLAST). Both techniques are implemented in a discrete-event network simulator by focusing on their overall effect on the resulting signal-to-interference-plus-noise ratio (SINR) at the intended receiver. Unlike previous works that have studied fully-connected scenarios or have assumed simple abstractions to represent MIMO behavior, this paper evaluates MIMO ad hoc networks that are not fully connected by taking into account the effects of multiple antennas on the clear channel assessment (CCA) mechanism of CSMA-like medium access control (MAC) protocols. In addition to presenting a performance evaluation of ad hoc networks operating according to each individual…
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Taxonomy
TopicsWireless Networks and Protocols · Wireless Communication Networks Research · Cooperative Communication and Network Coding
