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Distributed Pilot Decontamination Enhancing Link Reliability in Industrial IoT Networks
- Kim, Hong Ki;
- Kim, Sunho;
- Lee, Yoon Ku;
- Lee, Sang Hyun
WEB OF SCIENCE
2SCOPUS
2초록
Industrial Internet of Things networks require large-volume data delivery across interdependent mission-critical components. This imposes stringent ultrareliable low-latency communication requirements. In this regard, cell-free network architecture has risen as a compelling solution to shorten distances between devices and access points (APs). In cell-free networks, APs simultaneously serve devices with shared time-frequency resources, utilizing channel state information acquired via pilot signals from devices. However, a limited number of orthogonal pilot sequences entails the pilot reuse across multiple links. This results in the interference among pilot signals, which, in turn, degrades the overall link utilities. A skillful pilot assignment (PA) mitigates such interference, while the combinatorial nature of handling pilot-sharing groups limits the development of an efficient protocol. This work develops a survey propagation-inspired distributed PA framework, originating from statistical physics to address the equilibrium among particle interactions, which successfully interprets the consensus among pilot-sharing groups in the PA task. This facilitates distributed and efficient addressing of complex solution spaces, leading to computation-efficient solutions.
키워드
- 제목
- Distributed Pilot Decontamination Enhancing Link Reliability in Industrial IoT Networks
- 저자
- Kim, Hong Ki; Kim, Sunho; Lee, Yoon Ku; Lee, Sang Hyun
- 발행일
- 2024-11-15
- 유형
- Article
- 권
- 11
- 호
- 22
- 페이지
- 37071 ~ 37083