Realization and simulation of full hardware vehicle speed estimator on FPGA

Faner Meng, Xiao-hua Xie, Ke-tian Cai, Gui-jun Qin
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Abstract

When a vehicle is running, its measured speed can reflect the operation status of the vehicle sufficiently. In practice, therefore, it is very important to estimate the speed. In this paper, FPGA is used to realize full hardware vehicle speed estimator. The longitudinal velocity of the vehicle can be achieved by a Kalman estimator, which is described by Verilog language. The output data from the eight degrees of freedom vehicle model are regarded as input data of the function simulation in ModelSim. The single precision floating-point binary number is adopted to expand the data range and improve data accuracy. The curves related to the actual speed and estimated speed are analyzed in Matlab, and various performance indicators of the estimator can be checked.
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全硬件车速估计器在FPGA上的实现与仿真
当车辆行驶时,所测速度能充分反映车辆的运行状态。因此,在实践中,估计速度是非常重要的。本文采用FPGA实现全硬件车速估计器。车辆的纵向速度可以通过卡尔曼估计来实现,该估计用Verilog语言描述。将八自由度车辆模型的输出数据作为ModelSim中函数仿真的输入数据。采用单精度浮点二进制数,扩大了数据范围,提高了数据精度。在Matlab中分析了实际速度和估计速度的相关曲线,并可以检查估计器的各种性能指标。
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