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A configurable blind adaptive low-complexity time-domain equalizer for ADSL systems by auto-correlation minimization

机译:通过自相关最小化的ADSL系统可配置盲自适应低复杂度时域均衡器

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This paper discusses the design and the field programmable gate array (FPGA) implementation of a blind adaptive time-domain equalizer intellectual property (IP) core for asymmetric digital subscriber line (ADSL) systems. The design can be configured to implement the low-complexity adjacent lag auto-correlation minimization algorithm (LALAM) and adjacent lag auto-correlation minimization algorithm using moving average method (ALAM-MA) to shorten the channel. The IP core is implemented for the Xilinx Vertix II Pro XC2VP7-FF672-5 to be used in ADSL receivers. The implementation operates at a maximum frequency of 27 MHz and 38 MHz for ALAM-MA and LALAM algorithms, respectively. Simulation at all levels including the gate level simulation is performed and compared with the floating point simulation of the algorithms.
机译:本文讨论了非对称数字用户线(ADSL)系统的盲自适应时域均衡器知识产权(IP)内核的设计和现场可编程门阵列(FPGA)实现。该设计可以配置为使用移动平均法(ALAM-MA)来实现低复杂度的相邻滞后自相关最小化算法(LALAM)和相邻滞后自相关最小化算法以缩短信道。 IP内核是为Xilinx Vertix II Pro XC2VP7-FF672-5实施的,可在ADSL接收器中使用。对于ALAM-MA和LALAM算法,该实现分别在27 MHz和38 MHz的最大频率下运行。执行包括门级仿真在内的所有级别的仿真,并将其与算法的浮点仿真进行比较。

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