固定时间容错控制相关论文
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"Robust Time Synchronization in Wireless Sensor Networks" by Shengli Fu et al. This paper presents a robust time synchronization algorithm for wireless sensor networks that can tolerate clock drift and message delays. The algorithm is based on a distributed consensus protocol and ensures accurate time synchronization even in the presence of node failures and communication errors.
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"Fault-Tolerant Clock Synchronization in Distributed Systems" by Christian Cachin et al. This paper proposes a fault-tolerant clock synchronization algorithm for distributed systems. The algorithm uses a combination of clock adjustment and message exchange to achieve accurate time synchronization even in the presence of faulty nodes and communication delays.
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"Time-Based Fault-Tolerant Control for Cyber-Physical Systems" by Yingying Wang et al. This paper discusses the design and implementation of a time-based fault-tolerant control system for cyber-physical systems. The system uses time synchronization techniques to ensure accurate control actions, and incorporates fault detection and recovery mechanisms to handle system failures.
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"Fault-Tolerant Time Synchronization in Real-Time Distributed Systems" by Paul Ezhilchelvan et al. This paper presents a fault-tolerant time synchronization algorithm for real-time distributed systems. The algorithm uses a combination of clock adjustment and message exchange to achieve accurate time synchronization even in the presence of node failures and communication errors.
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"Reliable Time Synchronization in Wireless Sensor Networks" by Wei Lou et al. This paper proposes a reliable time synchronization algorithm for wireless sensor networks. The algorithm uses a combination of clock adjustment and message exchange to achieve accurate time synchronization even in the presence of clock drift, message delays, and node failures.
These papers provide insights into various techniques and algorithms for achieving accurate and fault-tolerant time synchronization in different types of systems. They can serve as a starting point for further research on the topic.
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