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PFcrowd: Privacy-Preserving and Federated Crowdsourcing Framework by Using Blockchain

机译:PFcrowd:使用区块链的隐私保护和联合众包框架

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Crowdsourcing is a promising computing paradigm that utilizes collective intelligence to solve complex tasks. While it is valuable, traditional crowdsourcing systems lock computation resources inside each individual system where tasks cannot reach numerous potential workers among the other systems. Therefore, there is a great need to build a federated platform for different crowdsourcing systems to share resources. However, the security issue lies in the center of constructing the federated crowdsourcing platform. Although many studies are focusing on privacy-preserving crowdsourcing, existing solutions require a trusted third party to perform the key management, which is not applicable in our federated platform. The reason is that it is difficult for a third party to be trusted by various systems. In this paper, we present a secure crowdsourcing framework as our initial effort toward this direction, which bridges together the recent advancements of blockchain and cryptographic techniques. Our proposed design, named PFcrowd, allows different crowdsourcing systems to perform encrypted task-worker matching over the blockchain platform without involving any third-party authority. The core idea is to utilize the blockchain to assist the federated crowdsourcing by moving the task recommendation algorithm to the trusted smart contract. To avoid third-party involvement, we first leverage the re-writable deterministic hashing (RDH) technique to convert the problem of federated task-worker matching into the secure query authorization. We then devise a secure scheme based on RDH and searchable encryption (SE) to support privacy-preserving task-worker matching via the smart contract. We formally analyze the security of our proposed scheme and implement the system prototype on Ethereum. Extensive evaluations of real-world datasets demonstrate the efficiency of our design.
机译:众包是一种有前途的计算范例,它利用集体智慧来解决复杂的任务。尽管它很有价值,但是传统的众包系统将计算资源锁定在每个单独的系统内,从而使任务无法到达其他系统中的众多潜在工作人员。因此,迫切需要为不同的众包系统构建联合平台以共享资源。但是,安全问题在于构建联合众包平台的中心。尽管许多研究都集中在保护隐私的众包上,但是现有的解决方案需要受信任的第三方来执行密钥管理,这不适用于我们的联合平台。原因是各种系统都难以信任第三方。在本文中,我们提出了一个安全的众包框架,作为我们朝着这个方向的最初努力,该框架将区块链和加密技术的最新进展联系在一起。我们提出的名为PFcrowd的设计允许不同的众包系统在区块链平台上执行加密的任务工匹配,而无需任何第三方授权。核心思想是通过将任务推荐算法移至受信任的智能合约来利用区块链来协助联合众包。为了避免第三方的参与,我们首先利用可重写的确定性哈希(RDH)技术将联合任务工匹配的问题转换为安全查询授权。然后,我们设计一种基于RDH和可搜索加密(SE)的安全方案,以通过智能合约支持保护隐私的工作人员匹配。我们正式分析了我们提出的方案的安全性,并在以太坊上实现了系统原型。对真实数据集的广泛评估证明了我们设计的效率。

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