Verkauf durch Sack Fachmedien

Guha / Chakrabarti / Saha

Self Aware Security for Real Time Task Schedules in Reconfigurable Hardware Platforms

Medium: Buch
ISBN: 978-3-030-79703-4
Verlag: Springer International Publishing
Erscheinungstermin: 25.08.2022
Lieferfrist: bis zu 10 Tage
This book focuses on how real-time task schedules for reconfigurable hardware-based embedded platforms may be affected due to the vulnerability of hardware and proposes self-aware security strategies to counteract the various threats. The emergence of Industry 4.0 has witnessed the deployment of reconfigurable hardware or field programmable gate arrays (FPGAs) in diverse embedded applications. These are associated with the execution of several real-time tasks arranged in schedules. However, they are associated with several issues. Development of fully and partially reconfigurable task schedules are discussed that eradicates the existing problems. However, such real-time task schedules may be jeopardized due to hardware threats. Analysis of such threats is discussed and self-aware security techniques are proposed that can detect and mitigate such threats at runtime.

Produkteigenschaften


  • Artikelnummer: 9783030797034
  • Medium: Buch
  • ISBN: 978-3-030-79703-4
  • Verlag: Springer International Publishing
  • Erscheinungstermin: 25.08.2022
  • Sprache(n): Englisch
  • Auflage: 1. Auflage 2021
  • Produktform: Kartoniert, Paperback
  • Gewicht: 318 g
  • Seiten: 183
  • Format (B x H x T): 155 x 235 x 12 mm
  • Ausgabetyp: Kein, Unbekannt

Autoren/Hrsg.

Autoren

Guha, Krishnendu

Chakrabarti, Amlan

Saha, Sangeet

Chapter 1: Introduction
(a) Reconfigurable hardware based embedded systems

(b) Importance of Real Time Scheduling for such embedded architectures

(c) Importance of Self Aware Security for such architectures

Chapter 2: Background

(a) Scheduling for embedded real time tasks and limitations of existing techniques

(b) Security related to hardware attacks and limitations of existing techniques

Chapter 3: A novel real-time scheduling for FPGAs having slotted area model

This chapter presents deadline-partition oriented scheduling methodologiesfor periodic hard real-time dynamic task sets on fully and partiallyreconfigurable FPGAs in which the floor of the FPGA is assumed to be statically equi-partitioned into a set of homogeneous tiles such that anyarbitrary task of the given task set may be feasibly mapped into the areaof a given tile.

Chapter 4: A novel real-time scheduling for FPGAs having flexible area model

This chapter presents scheduling methodologies for periodic dependent hard real-time dynamic task sets on fully and partially reconfigurable FPGAs in which the floor of the FPGA follows flexible area model such that any task can be placed anywhere within the floor area. This will work will attempt to solve both the temporal and spatial aspects of the scheduling.

Chapter 5: Denial of Service Attacks for Real Time Scheduling and Related Mitigation Techniques

This chapter presents threat analysis associated with denial of service attacks due to delay inducing hardware trojans in embedded architectures for the scheduling strategies presenteed in Chapter 3 and 4. A self aware security module is also presented that detects and mitigates the threat.

Chapter 6: Erroneous Result Generation Attack for Real Time Scheduling and Related Mitigation Technique

This chapter presents threat analysis associated with generation of erroneous results that may jeopardize the real time task schedules presented in Chapter 3 and 4. Related detection and mitigation techniques are presented alongwith. In addition to this, it is also described how related modifications of the self aware security module can ensure security for the present scenario.
Chapter 7: Conclusion


In this book, we present the importance of real time scheduling for reconfigurable hardware based embedded platforms and related security needs. We present limitations of existing techniques and present some new real time scheduling techniques suitable for the embedded platform. We also focus on how denial of service and erroneous result generation may take place on the real time schedules due to vulnerability of hardware. Related detection and mitigation techniques are discussed, along with description of a self aware module that facilitates detection and mitigation from such threats.