论文标题

将物联网感密度和众包与隐私集成:智能城市的隐私感应感应

Integrating IoT-Sensing and Crowdsensing with Privacy: Privacy-Preserving Hybrid Sensing for Smart Cities

论文作者

Zhu, Hanwei, Chau, Sid Chi-Kin, Guarddin, Gladhi, Liang, Weifa

论文摘要

数据感应和收集是智能城市各种信息驱动服务的重要任务。一方面,物联网(IoT)传感器可以在某些固定位置部署,以可靠地捕获数据,但感测覆盖率有限。另一方面,数据也可以通过自愿用户贡献的人群来动态收集,但遭受了其不可靠性和缺乏用户贡献的激励措施。在本文中,我们探讨了一种称为“混合感”的综合范式,该范式以互补的方式利用了物联网感应和人群。在混合传感中,激励用户提供感应数据,以提供物联网传感器未涵盖的传感数据,并提供众包反馈以协助校准IoT传感器。他们的贡献将获得奖励,可以兑现,可以从混合系统中检索合成的信息。在本文中,我们开发了一个支持明确用户隐私的混合传感系统 - 物联网传感器被遮挡,以防止捕获私人用户数据,用户通过隐私保护协议与众包服务器进行交互,以保持其匿名性。我们系统的关键应用是智能停车,用户可以在室外停车场查询并找到可用的停车位。我们实施了用于智能停车的混合传感系统,并进行了广泛的经验评估。最后,我们的混合传感系统可以潜在地应用于智能城市中其他信息驱动的服务。

Data sensing and gathering is an essential task for various information-driven services in smart cities. On the one hand, Internet of Things (IoT) sensors can be deployed at certain fixed locations to capture data reliably but suffer from limited sensing coverage. On the other hand, data can also be gathered dynamically through crowdsensing contributed by voluntary users but suffer from its unreliability and the lack of incentives for users' contributions. In this paper, we explore an integrated paradigm called "hybrid sensing" that harnesses both IoT-sensing and crowdsensing in a complementary manner. In hybrid sensing, users are incentivized to provide sensing data not covered by IoT sensors and provide crowdsourced feedback to assist in calibrating IoT-sensing. Their contributions will be rewarded with credits that can be redeemed to retrieve synthesized information from the hybrid system. In this paper, we develop a hybrid sensing system that supports explicit user privacy -- IoT sensors are obscured physically to prevent capturing private user data, and users interact with a crowdsensing server via a privacy-preserving protocol to preserve their anonymity. A key application of our system is smart parking, by which users can inquire and find the available parking spaces in outdoor parking lots. We implemented our hybrid sensing system for smart parking and conducted extensive empirical evaluations. Finally, our hybrid sensing system can be potentially applied to other information-driven services in smart cities.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源