Aug 2026· Electronics· Vol 15, pp. 3400· 1 citation· 18 references
TL;DR
A two-stage MAC protocol that couples carrier sense multiple access with collision avoidance (CSMA/CA) for contention and time division multiple access (TDMA) for scheduled data transmission is proposed.
Abstract
In dense indoor Internet of Things (IoT) environments, simultaneously transmitting and reflecting intelligent surfaces (STAR-IRS) can provide full-space coverage by steering energy to both sides of the surface. However, most STAR-IRS works focus on the physical layer and overlook medium access control (MAC) challenges, such as how to collect channel state information (CSI), dynamically assign each STAR-IRS element to either the reflection or transmission mode, and coordinate concurrent users. We propose a two-stage MAC protocol that couples carrier sense multiple access with collision avoidance (CSMA/CA) for contention and time division multiple access (TDMA) for scheduled data transmission. During contention, devices send extended request-to-send (eRTS) frames to enable CSI acquisition; during transmission, the access point (AP) configures the STAR-IRS, allocates TDMA slots, and pairs one reflection-region device (RD) with one transmission-region device (TD) for non-orthogonal multiple access (NOMA) with successive interference cancellation (SIC). Analysis and simulations show that the proposed scheme increases throughput and reduces delay compared with reflective-only IRS baselines without NOMA, while remaining practical for dynamic indoor IoT.
A cross-layer end-to-end (E2E) resource orchestration framework for green CF-mMIMO ISAC systems with distributed multi-target detection is developed and a fundamental implementation trade-off is revealed: FIS provides lower detector-processing complexity and higher detection performance, whereas PIS substantially reduc...
Z. Behdad, Ozlem Tuugfe Demir, Ki Won Sung et al.· arXiv.org· 0 citations
The rapid proliferation of IoT wireless sensor networks has intensified the demand for medium access control (MAC) protocols capable of simultaneously supporting concurrent multi-priority data services, low latency, and energy efficiency. Existing protocols, including TMPQ-MAC and PMME-MAC, struggle to adequately balan...
Thu-Hang T. Nguyen, Kha Kim Pham, Hai-Chau Le· IEEE International Conferenc...· 0 citations
With the rapid development of the Industrial Internet of Things (IIoT), sensor nodes often face harsh channel conditions, leading to transmission failures and increased Age of Information (AoI), which cannot meet the real-time requirements of latency-sensitive systems. To solve this problem, this paper proposes an impr...
Di Lei, Wen-Bin Sun, Xin Yang et al.· 2026 IEEE/CIC International...· 0 citations
This paper investigates an intelligent reflecting surface (RIS)-assisted integrated sensing and communication (ISAC) system for Internet of Things (IoT) deployments, where a large number of low-cost and energy-constrained devices require reliable connectivity, environment awareness, and sustainable powering. We conside...
Fei Wang, Xiang-Yue Cui, Zhengyu Zhu et al.· IEEE Transactions on Green C...· 0 citations
While indoor Internet of Things (IoT) and sensor networks increasingly rely on Wi-Fi access points (APs) to collect high-bandwidth data streams from multiple devices, conventional APs rely on static antenna deployments, whose fixed orientations are often suboptimal in dynamic propagation environments. To overcome this...