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100 Gbit/s AES-GCM Cryptography Engine for Optical Transport Network Systems: Architecture, Design and 40 nm Silicon Prototyping

机译:用于光传输网络系统的100 Gbit / s Aes-GCM加密引擎:架构,设计和40 nm硅原型

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摘要

This work reports the architecture, design, verification and prototyping of a 100 Gbit/s AES-GCM cryptography engine specifically conceived for securing optical transport network (OTN) systems. The proposed solution addresses the main systemic issues related to the use of a block cipher in an OTN system, such as the need for data packetization, the transport of cryptographic auxiliary information, the hitless cipher key change mechanism, and others. The implemented functional logic block (IP core) interfaces with other OTN processing blocks with a 640-bit data path running at 180 MHz. The design was successfully verified by simulations based on regular test benches and the encryption algorithm was validated against standardized test vectors. The full engine was integrated into an 8-million gate 40 nm OTN Processor ASSP developed by CPQD for the Brazilian telecom industry. Chip and ASSP design metrics are also presented. The overall concept and design ideas can contribute to other works related to both OTN and cryptography technology.
机译:这项工作报告了100 Gbit / s AES-GCM加密发动机的架构,设计,验证和原型设计,该发动机专门用于保护光传输网络(OTN)系统。所提出的解决方案解决了与在OTN系统中使用块密码相关的主要系统问题,例如对数据打包的需要,加密辅助信息的传输,无人密码密钥改变机制等。实现的功能逻辑块(IP核心)与其他OTN处理块接口,其中640位数据路径以180 MHz运行。通过基于常规测试台的仿真成功验证了设计,并针对标准化测试向量验证了加密算法。整个发动机集成到由CPQD开发的巴西电信行业开发的800万门40 NM OTN处理器ASSP。还提出了芯片和ASSP设计指标。整体概念和设计思路可以促进与OTN和密码技术相关的其他作品。

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