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Successive Approaching Phase Rotation Algorithm for Amplitude Phase Computation in Demodulation

机译:解调中幅度和相位计算的逐次逼近相位旋转算法

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A Successive Approximation Phase Rotation Algorithm (SAPR), based on Data Table, was presented to calculate amplitude and phase from In-phase and Quadrature-phase data as to avoid complicated calculation using square root and arctangent transcendental functions in digital demodulation. Multiplication is only needed in the algorithm by using data table stored in large capacity memory, the procedure is simple and fast. The algorithm can be realized by the use of CPU, Field Programmable Gate Array-FPGA and Synchronous Dynamic Random Access Memory-SDRAM. The sinuous values of certain bits are stored in the SDRAM after being quantized. And FPGA reads the sine values in the SDRAM to calculate the amplitude and phase according to I/Q data in demodulation. The algorithm has the characteristic of convenient 、high speed and high accurate.
机译:提出了一种基于数据表的逐次逼近相位旋转算法(SAPR),可以从同相和正交相数据中计算出幅度和相位,从而避免了在数字解调中使用平方根和反正切超越函数进行复杂的计算。该算法仅需使用存储在大容量存储器中的数据表进行乘法运算,操作过程简单,快捷。该算法可以通过使用CPU,现场可编程门阵列FPGA和同步动态随机存取存储器SDRAM来实现。某些位的正弦值在量化后存储在SDRAM中。 FPGA读取SDRAM中的正弦值,并根据解调中的I / Q数据计算幅度和相位。该算法具有方便,高速,高精度的特点。

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