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An efficient way of multirate asynchronous data transfer in MicroBlaze™ processor for GNSS receiver

机译:用于GNSS接收机的MicroBlaze™处理器中的多速率异步数据传输的有效方式

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This paper presents a novel for asynchronous data transfer of correlation values in Navigation receiver implemented with novel approach of using FPGA and MicroBlaze™ soft-core processor. The design consists of 14 channel receiver with correlators in FPGA logic and discriminators and loop filters in MicroBlaze™ Processor. This approach needs transfer of data with asynchronous clock domains between FPGA and MicroBlaze™ processor. In each channel, there are six correlation values to be transferred from FPGA logic to MicroBlaze™ processor. These correlation values are processed by MicroBlaze™ processor and feedback is provided to control code and carrier frequency and phase for each channel. The data transfer in this case is time bound as there are many close loop control systems and any error or time lag in the system may lead to loss of signal lock or degradation in the performance. The correlation values change at different instances and rate in different channels so use of FIFO for such application is not suitable. A new approach has been devised for data transfer between FPGA and MicroBlaze™ processor. This paper describes the approach with its advantages compared to conventional FIFO based approach.
机译:本文介绍了一种新颖的导航接收器中相关值的异步数据传输方法,该方法通过使用FPGA和MicroBlaze™软核处理器的新颖方法实现。该设计包括14通道接收器,在FPGA逻辑中具有相关器,在MicroBlaze™处理器中具有鉴别器和环路滤波器。这种方法需要在FPGA和MicroBlaze™处理器之间通过异步时钟域进行数据传输。在每个通道中,有六个相关值要从FPGA逻辑传输到MicroBlaze™处理器。这些相关值由MicroBlaze™处理器处理,并提供反馈以控制每个通道的代码,载波频率和相位。在这种情况下,数据传输是有时间限制的,因为存在许多闭环控制系统,并且系统中的任何错误或时滞都可能导致信号锁定丢失或性能下降。相关值在不同的情况下以不同的速率在不同的通道中变化,因此将FIFO用于此类应用不适合。已经设计出一种新的方法来在FPGA和MicroBlaze™处理器之间进行数据传输。与传统的基于FIFO的方法相比,本文介绍了该方法的优势。

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