Publication:
Robust Distributed Collaborative Beamforming for WSANs in Dual-Hop Scattered Environments with Nominally Rectangular Layouts

dc.contributor.authorBen Smida, O
dc.contributor.authorAffes, S
dc.contributor.authorJayakody, D
dc.contributor.authorNizam, Y
dc.date.accessioned2026-02-21T05:06:50Z
dc.date.issued2025-03-19
dc.description.abstractWe introduce a robust distributed collaborative beamforming (RDCB) approach for addressing channel estimation challenges in dual-hop transmissions within wireless sensor and actuator networks (WSANs) of K nodes. WSANs enhance wireless communication by reducing data transmission, latency, and energy consumption while optimizing network load through integrated sensing and actuation. The source S transmits signals to the WSAN, where nodes relay them to the destination D using beamforming weights to minimize noise and preserve signal integrity. These weights depend on channel state information (CSI), where estimation errors degrade performance. We develop RDCB solutions for three first-hop propagation scenarios—monochromatic [line-of-sight (LoS)] or “M”, bichromatic (moderately scattered) or “B”, and polychromatic (highly scattered) or “P”—while assuming a monochromatic LoS or “M” link for the second hop between the nodes and the far-field destination. Termed MM-RDCB, BM-RDCB, and PM-RDCB, respectively (“X” and “Y” in XY-RDCB—for X (Formula presented.) and Y (Formula presented.) —refer to the chromatic natures of the first- and second-hop channels, respectively, to which a specific RDCB solution is tailored), these solutions leverage asymptotic approximations for large K values and the nodes’ geometric symmetries. Our distributed solutions allow local weight computation, enhancing spectral and power efficiency. Simulation results show significant improvements in the signal-to-noise ratio (SNR) and robustness versus WSAN node placement errors, making the solutions well suited for emerging 5G and future 5G+/6G and Internet of Things (IoT) applications for different challenging environments.
dc.identifier.citationBen Smida, O., Affes, S., Jayakody, D., & Nizam, Y. (2025). Robust Distributed Collaborative Beamforming for WSANs in Dual-Hop Scattered Environments with Nominally Rectangular Layouts. Journal of Sensor and Actuator Networks, 14(2), 32. https://doi.org/10.3390/jsan14020032
dc.identifier.doihttps://doi.org/10.3390/jsan14020032
dc.identifier.issn22242708
dc.identifier.urihttps://rda.sliit.lk/handle/123456789/4670
dc.language.isoen
dc.publisherMultidisciplinary Digital Publishing Institute (MDPI)
dc.relation.ispartofseriesJournal of Sensor and Actuator Networks ; Volume 14 Issue 2 Article number 32
dc.subjectchannel mismatch
dc.subjectdeterministic WSAN
dc.subjectgeometrical grids
dc.subjectlocalization
dc.subjectrobust DCB (RDCB)
dc.subjectsynchronization
dc.subjectwireless sensor and actuator network (WSAN)
dc.subjectdistributed collaborative beamforming (DCB)
dc.titleRobust Distributed Collaborative Beamforming for WSANs in Dual-Hop Scattered Environments with Nominally Rectangular Layouts
dc.typeArticle
dspace.entity.typePublication

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