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Complete System-on-Chip Linux-based Platform for Measurement and Generation of Time Domain Signals

机译:完整的基于Linux的片上系统平台,用于测量和生成时域信号

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In this contribution we present a novel implementation of a bundle hardware, firmware and software for the measurement and generation of time domain signals, based on a custom System-on-Chip Linux-based platform. Recently, many solutions have been already proposed both by the industry and by the academia for the measurement and generation of time events, in the forms of full-custom Application-Specific Integrated Circuits and Field Programmable Gate Array IP-Cores. However, while these solutions have proven themselves mostly satisfying in terms of performance, they often lack ease of use, upgrade and interfacing. Indeed, while those implementations are flexible and can be fully customized, integrating them in existing systems is usually, if not always, challenging. To solve these issues, we present here a hybrid hardware and software implementation of Time-to-Digital Converters and Digital-to-Time Converters in Programmable Logic. The main feature is the simplified, yet efficient, interface to other user logic or to the ARM core in the Xilinx Zynq-7000 System-on-Chips, which hosts a Linux-based Operating System. The interfacing of the two worlds is eased by a set of IP-Cores and libraries, so that the performance of the Programmable Logic part can be used and connected easily with the more flexible and user-friendly Processing System. This opens new opportunities, like the use of the Linux Operating System for simple transfer of data through advanced interfaces and protocols, without requiring complex hardware on the Programmable Logic part.
机译:在此贡献中,我们基于定制的基于Linux的片上系统平台,提出了一种用于测量和生成时域信号的捆绑硬件,固件和软件的新颖实现。最近,业界和学术界已经以完全定制的专用集成电路和现场可编程门阵列IP核的形式提出了许多用于测量和生成时间事件的解决方案。但是,尽管这些解决方案在性能方面已证明自己最令人满意,但它们通常缺乏易于使用,升级和接口的功能。确实,尽管这些实现是灵活的并且可以完全自定义,但是将它们集成到现有系统中通常(即使不是总是)也具有挑战性。为了解决这些问题,我们在这里介绍可编程逻辑中时间数字转换器和数字时间转换器的混合硬件和软件实现。主要功能是与其他用户逻辑或Xilinx Zynq-7000片上系统中的ARM内核的简化而高效的接口,该系统托管基于Linux的操作系统。一组IP内核和库简化了这两个世界的接口,因此可以使用可编程逻辑部分的性能,并与更灵活和用户友好的处理系统轻松连接。这带来了新的机遇,例如使用Linux操作系统通过高级接口和协议进行简单的数据传输,而无需在可编程逻辑部分上使用复杂的硬件。

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