PICO:通过可逆密码模糊来保护隐私

T. Boult
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引用次数: 136

摘要

在智能成像系统、监控和生物识别方面取得了重大进展,增强了鲁棒性,提高了性能,降低了成本。因此,监控和智能视频系统的部署正在蓬勃发展,并增加了这些对隐私的影响。对许多人来说,网络智能视频系统,尤其是视频监控和生物识别技术,是奥威尔式“老大哥”侵犯隐私的缩影。虽然数以千万计的政府资金被用于改进视频监控的研究,但几乎没有一笔资金投入到增强隐私或有效平衡隐私与安全的技术上。本文提供了一个示例,演示了如何使用和适应加密思想并将其与智能视频处理相结合,技术方法可以提供解决这些关键权衡的解决方案,从而潜在地提高安全性和隐私性。在回顾了以往视频系统中隐私改善技术研究的基础上,提出了加密可逆遮挡技术。这是一种加密技术的应用,旨在改善隐私方面的问题,同时允许继续进行一般监视,并且只允许使用由法院或其他第三方维护的解密密钥进行全面访问(即侵犯隐私)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
PICO: Privacy through Invertible Cryptographic Obscuration
Signifiicant research progress has been made in intelligent imaging systems, surveillance and biometrics improving robustness, increasing performance and decreasing cost. As a result, deployment of surveillance and intelligent video systems is booming and increasing the impact of these on privacy. For many, networked intelligent video systems, especially video surveillance and biometrics, epitomize the invasion of privacy by an Orwellian "big brother:. While tens of millions in government funding have been spent on research improving video surveillance, virtually none has been invested in technologies to enhance privacy or effectively balance privacy and security. This paper presents an example that demonstrates how using and adapting cryptographic ideas and combining them with intelligent video processing, technological pproaches can provide for solutions addressing these critical trade-offs, potentially improving both security and privacy. After reviewing previous research in privacy improving technology in video systems, the paper then presents cryptographically invertible obscuration. This is an application of encryption techniques to improve the privacy aspects while allowing general surveillance to continue and allowing full access (i.e. violation ofprivacy) only with use of a decryption key, maintained by a court or other thirdparty.
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