无气味卡尔曼滤波器的模块化fpga实现

Jeremy Soh, Xiaofeng Wu
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引用次数: 7

摘要

纳米卫星虽然降低了成本和空间进入的便利性,但与大型卫星相比,其性能下降,特别是在姿态确定和控制方面。现场可编程门阵列(fpga)在过去已经被用来弥补能力的不足,但往往比通用微处理器有更复杂的开发过程。为了简化开发并促进卫星任务之间的可移植性和可重用性,提出了在FPGA器件上实现无气味卡尔曼滤波器(UKF)的硬件/软件协同设计。该设计在Zynq-7000 XC7Z020上实现,以建立概念验证并使用模拟数据进行验证。与纯软件实现相比,该设计实现了1.5倍的加速,并且资源使用和功耗都足够低,可以集成到完整的SoC中。
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A modular FPGA-based implementation of the Unscented Kalman Filter
Nanosatellites, while lowering the cost and ease of space access, suffer the issue of reduced performance compared to larger satellites, particularly when it comes to attitude determination and control. Field Programmable Gate Arrays (FPGAs) have been used in the past to make up for the shortfall in capability but tend to have more complicated development processes than general purpose microprocessors. To simplify development as well as promote portability and reusability between satellite missions, a hardware/software co-design of the Unscented Kalman Filter (UKF) implemented on a FPGA device is presented. The design is implemented on a Zynq-7000 XC7Z020 to establish proof-of-concept and verified using simulated data. The design achieved a 1.5× speed-up over a purely software implementation and the resource usage and power consumption are both low enough to be integrated into a full SoC.
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