On The Batch Outsourcing Of Pairing Computations

Öznur Kalkar, I. Sertkaya, Seher Tutdere
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Abstract

Pairing-based cryptography is utilized in a wide range of devices, such as servers, mobile devices, smart cards and sensors. Pairing computation would be a burden for power and/or computation-restricted devices. Protocols for outsourcing pairing computations from limited devices to more resourceful devices are already proposed. These protocols naturally require verification of the computation and secrecy of the inputs and/or outputs. Similarly, batch pairing outsourcing protocols aim to improve efficiency over multiple runs of the state-of-the-art single pairing delegation protocols. Here, we will cover efficient, privacy preserving, secure batch pairing outsource protocols for each type based on secrecy of inputs and outputs. We propose the first generic outsourcing protocol where inputs and outputs of the pairing function are secret. In addition to this, we give some methods to avoid certain type of attacks, increase efficiency and get rid of pairing arithmetic. The proposed protocols enable limited devices to outsource pairing computations with only elliptic curve arithmetic.
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结对计算的批量外包研究
基于配对的密码学广泛应用于各种设备,如服务器、移动设备、智能卡和传感器。配对计算将成为功率和/或计算受限设备的负担。将配对计算从有限的设备外包到资源更丰富的设备的协议已经提出。这些协议自然需要验证输入和/或输出的计算和保密性。类似地,批配对外包协议旨在通过多次运行最先进的单个配对委托协议来提高效率。在这里,我们将介绍基于输入和输出的保密性的每种类型的高效、隐私保护、安全的批处理配对外包协议。我们提出了第一个通用的外包协议,其中配对函数的输入和输出是保密的。除此之外,我们还给出了一些方法来避免某些类型的攻击,提高效率和摆脱配对算法。所提出的协议使有限的设备能够只使用椭圆曲线算法进行配对计算。
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