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Titlebook: Blockchain-Based Internet of Things; Lu Hou,Lingyi Han,Kan Zheng Book 2024 The Editor(s) (if applicable) and The Author(s), under exclusiv

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https://doi.org/10.1007/978-3-642-47929-8 consensus algorithms, while all the data on chain are open to the public. In normal IoT system, the end-devices are only responsible for data sensing and uploading. To keep as long lifetime as possible, the end-devices need to be simple, and the operations must not consume too much resources and energy.
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https://doi.org/10.1007/978-3-322-90879-7tracts. However, the data in IoT system consist of the environmental sensing data and control commands. How to design transaction and block structure to meet the requirements of IoT data storing and security is challenging.
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https://doi.org/10.1007/978-3-031-70303-4Blockchain; Internet of Things; Data Security; Architecture; Latency Optimization; Transaction Migration;
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Konventionelle Beschreibungsmittel,The RAFT algorithm does not consider the varying resources of IoT end-devices, as it relies on a purely random leader selection mechanism. This oversight can lead to resource wastage when applying RAFT in BIoT systems. Therefore, this chapter provides a lightweight consensus mechanism for BIoT.
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Zur Zeitdimension in der BiographieforschungThe IoT systems face significant challenges regarding data security, privacy, and trust. Although blockchain has demonstrated potential to address these issues, integrating blockchain with IoT remains challenging due to the computing, storage, and energy constraints of IoT devices. This monograph presents a comprehensive design for BIoT.
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Lightweight Consensus Mechanism for BIoT,The RAFT algorithm does not consider the varying resources of IoT end-devices, as it relies on a purely random leader selection mechanism. This oversight can lead to resource wastage when applying RAFT in BIoT systems. Therefore, this chapter provides a lightweight consensus mechanism for BIoT.
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Introduction, value of IoT data is increasing alongside the expansion of IoT applications, leading to rising demands for IoT data security and privacy. Ensuring IoT data security involves maintaining data immutability and disaster tolerance, while privacy requires that data access is restricted to authorized use
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