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Coping With the Obsolescence of Safety- or Mission-Critical Embedded Systems Using FPGAs

机译:使用FPGA应对安全或任务关键型嵌入式系统的淘汰

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Today, many companies are facing the problem of component obsolescence in embedded systems. The incredibly fast growth rate of semiconductor companies is reducing dramatically the time components are available on the market. Twenty years ago, components remained on the market for 5 to 10 years; nowadays, they disappear from the market in less than two years. Developers of safety- or mission-critical systems are particularly sensitive to the obsolescence problem as their systems are expected to remain operative for very long periods (e.g., 30 years or more), and maintaining them fully operative is becoming difficult as the needed components may no longer be available. A possible solution for this problem may be the implementation of the needed components using FPGAs. The purpose of this paper is to provide an overview of the different possibilities designers have to face when developing such dependability-oriented solution. Also, a design flow is presented, describing its applicability to the implementation of processor cores, to be employed as a replacement of obsolete parts in safety- or mission-critical applications. Results show that there is a strong dependence of the reliability of the design with the specific application. The scrubbing process can also be optimized using the related technique.
机译:今天,许多公司都面临嵌入式系统中组件过时的问题。半导体公司令人难以置信的快速增长正在极大地减少市场上可用组件的时间。二十年前,组件在市场上停留了5至10年。如今,它们在不到两年的时间内就从市场上消失了。安全或任务关键型系统的开发人员对过时问题特别敏感,因为预计它们的系统将在很长一段时间(例如30年或更长时间)内保持运行状态,并且由于所需的组件可能使它们保持完全运行状态变得越来越困难不再可用。该问题的可能解决方案可能是使用FPGA实现所需组件。本文的目的是概述设计人员在开发这种面向可靠性的解决方案时必须面对的各种可能性。此外,还提出了一种设计流程,描述了其对处理器内核实现的适用性,将被用作安全性或任务关键型应用程序中陈旧零件的替代品。结果表明,设计的可靠性与特定应用密切相关。洗涤过程也可以使用相关技术进行优化。

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