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[IEEE 2019 IEEE SENSORS - Montreal, QC, Canada (2019.10.27-2019.10.30)] 2019 IEEE SENSORS - Optical fiber methane sensor using refractometry

DOI:10.1109/sensors43011.2019.8956501 出版年份:2019 更新时间:2025-09-16 10:30:52
摘要: Cloud data owners prefer to outsource documents in an encrypted form for the purpose of privacy preserving. Therefore it is essential to develop efficient and reliable ciphertext search techniques. One challenge is that the relationship between documents will be normally concealed in the process of encryption, which will lead to significant search accuracy performance degradation. Also the volume of data in data centers has experienced a dramatic growth. This will make it even more challenging to design ciphertext search schemes that can provide efficient and reliable online information retrieval on large volume of encrypted data. In this paper, a hierarchical clustering method is proposed to support more search semantics and also to meet the demand for fast ciphertext search within a big data environment. The proposed hierarchical approach clusters the documents based on the minimum relevance threshold, and then partitions the resulting clusters into sub-clusters until the constraint on the maximum size of cluster is reached. In the search phase, this approach can reach a linear computational complexity against an exponential size increase of document collection. In order to verify the authenticity of search results, a structure called minimum hash sub-tree is designed in this paper. Experiments have been conducted using the collection set built from the IEEE Xplore. The results show that with a sharp increase of documents in the dataset the search time of the proposed method increases linearly whereas the search time of the traditional method increases exponentially. Furthermore, the proposed method has an advantage over the traditional method in the rank privacy and relevance of retrieved documents.
作者: Chi Chen,Xiaojie Zhu,Peisong Shen,Jiankun Hu,Song Guo,Zahir Tari,Albert Y. Zomaya
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To develop an efficient and reliable ciphertext search technique that maintains the semantic relationship between documents in an encrypted domain, supports fast ciphertext search within a big data environment, and verifies the authenticity of search results.

The proposed MRSE-HCI architecture effectively maintains the semantic relationship between plain documents over encrypted documents, supports efficient and reliable online information retrieval in a big data environment, and provides a verifiable mechanism to ensure the correctness and completeness of search results. The search time increases linearly with the size of the document collection, and the method shows advantages in rank privacy and relevance of retrieved documents.

The technical and application constraints include the need for dynamic data collection support, the potential for information leakage in known ciphertext and known background models, and the challenge of maintaining search efficiency and accuracy with exponentially growing document collections.

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