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A Systematic Approach for Implementing Fractional-Order Operators and Systems

机译:实现分数阶运算符和系统的系统方法

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In this paper a generalized class of fractional-order systems is realized in digital hardware using a low-cost field programmable gate array (FPGA) device. First, fractional-order derivatives and integrals are realized in fixed-point hardware, wherein each coefficient and signal is represented with a custom number of bits. Both shift-form and delta-form structures are used for discretization, and are combined in the digital hardware realization to achieve a desired accuracy with low hardware cost. A methodology is then developed to construct general fractional-order transfer functions using the fractional-order derivatives and integrals as building blocks, in the same way that their integer-order counterparts are used in an integer-order system. Three systems are presented to illustrate the methodology using partitioned-form and feedback-form realization structures; the hardware results verify that the high-speed realizations achieve the desired accuracy with a low-cost solution.
机译:在本文中,使用低成本现场可编程门阵列(FPGA)器件在数字硬件中实现了一类广义的分数阶系统。首先,在定点硬件中实现分数阶导数和积分,其中每个系数和信号都用自定义位数表示。移位形式和增量形式的结构都用于离散化,并结合在数字硬件实现中以较低的硬件成本实现所需的精度。然后开发一种方法,以分数阶导数和积分为构建基块来构造通用分数阶传递函数,就像在整数阶系统中使用它们的整数阶对应物一样。提出了三个系统来说明使用分区形式和反馈形式实现结构的方法;硬件结果验证了通过低成本解决方案实现的高速实现所需的精度。

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