首页> 外文期刊>Journal of supercomputing >Dynamic power-aware scheduling of real-time tasks for FPGA-based cyber physical systems against power draining hardware trojan attacks
【24h】

Dynamic power-aware scheduling of real-time tasks for FPGA-based cyber physical systems against power draining hardware trojan attacks

机译:基于FPGA的网络物理系统的实时任务动态动力感知调度,防止电力排放硬件特洛伊木马攻击

获取原文
获取原文并翻译 | 示例
           

摘要

The present era has witnessed deployment of reconfigurable hardware or field-programmable gate arrays (FPGAs) in diverse domains like automation and avionics, which are cyber physical in nature. Such cyber physical systems are associated with strict power budgets. Efficient real-time task-scheduling strategies exist that ensure execution of maximum number of tasks within the power budget. However, these do not consider hardware threats into account. Recent literature has exposed the existence of hardware trojan horses (HTHs). HTHs are malicious circuitry that remain dormant during testing and evade detection, but get activated at runtime to jeopardize operations. HTHs can be etched into the FPGA fabric by adversaries in the untrustworthy foundries, during fabrication of the FPGAs. Even vendors selling reconfigurable intellectual properties or bitstreams that configure the FPGA fabric for task operation may insert HTHs during writing the bitstream codes. HTHs may cause a variety of attacks which may affect the basic security primitives of the system like its integrity, confidentiality or availability. In this work, we explore how power draining ability of HTHs may reduce lifetime of the system. A self-aware approach is also proposed which detects the affected resources of the system and eradicates their use in future to facilitate system reliability. An offline-online scheduling strategy is proposed for periodic tasks which can ensure reliability of their operations till the expected lifetime of the system. Accommodating non-periodic tasks in the periodic task schedule based on available power is also focused. For experimentation, we consider tasks associated with EPFL benchmarks and demonstrate results based on the metric task success rate for periodic tasks and metric task rejection rate for non-periodic tasks.
机译:目前的时代目睹了可重构硬件或现场可编程门阵列(FPGA)的部署,如自动化和航空电子等各个领域,它们是网络物质的。这些网络物理系统与严格的电力预算相关联。有效的实时任务调度策略,确保在电源预算中执行最大任务数。但是,这些不考虑考虑硬件威胁。最近的文献暴露了硬件特洛伊木马(Hths)的存在。 Hths是在测试和逃避检测期间保持休眠的恶意电路,但在运行时激活以危及操作。在FPGA的制造期间,在不值得信赖的铸造件中,可以通过对手蚀刻到FPGA面料中。甚至销售可重构的知识产权或者为任务操作配置FPGA结构的比特流也可以在编写比特流代码期间插入HTH。 Hths可能导致各种攻击可能影响系统的基本安全原语,如其完整性,机密性或可用性。在这项工作中,我们探讨了Hths的力量耗尽能力如何减少系统的寿命。还提出了一种自我意识的方法,该方法检测系统的受影响资源,并将将来消除它们的使用,以便于系统可靠性。为定期任务提出了一个离线在线调度策略,这可以确保其操作的可靠性直到系统的预期寿命。还专注于基于可用电量的定期任务时间表中的非定期任务。对于实验,我们考虑与EPFL基准相关联的任务,并根据非周期性任务的定期任务和度量任务拒绝率的度量任务成功率展示结果。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号