MC-BRIDGE: A Modular Receiver-Chain Simulation Framework for OECT-Based Molecular Communication
2026-07-23T08:51:45Z•a02cf0dd4fe06b845228cf0d8c0efa5974e859415b2cff458a2088bd5b2a522d
ISACIoTOECTUAVantenna-systemsbeamformingbreak-resilient-codescoding-theoryconstant-weight-codesdeletion-channeleavesdroppingenergy-efficiencyfull-duplexgeometry-optimizationjamminglist-recoverymolecular-communicationpermutation-channelphysical-layerpredictive-communicationsecure-communicationsself-interferencesimulation-framework
What happened
This collection contains multiple 2026 arXiv submissions spanning physical-layer communications, coding theory, and energy-efficient IoT. Highlights include MC-BRIDGE, a modular simulation framework for OECT-based molecular receivers (linking transport, binding, and device transduction); FullPASS, a geometry-optimization approach for in-band full-duplex pinching-antenna transceivers and self-interference control; new explicit bounds and constructions for constant-weight and break-resilient codes; combinatorial and finite-block capacity bounds for q-ary deletion channels; new criteria (extction
Why it matters
A reviewed impact interpretation has not been published for this record.
Evidence and limitations
- Source ID
- arxiv_math_it
- Record identifier
- a02cf0dd4fe06b845228cf0d8c0efa5974e859415b2cff458a2088bd5b2a522d
- Enrichment time
- 2026-07-23T08:51:45Z
- AI-assisted enrichment
- Yes
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