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Lossless Compression and Implementation for Medical Signals Using Verilog

机译:使用Verilog的医疗信号的无损压缩和实施

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In this paper, a lossless bio signal compression method known as Log2 sub band compression is implemented. A xor-Log2 sub-band compression where two data samples are compared to identify differences between them. This compression technique is applied for two random 24-bit bio medical signals. One block is current data which has data to be compressed and previous data has no value initially. There are four cases where the number of bits to be compressed are 8, 14, 20 and 26 bits. Compression occurs on certain count taken as 10, 16, 22 and 28. The compressed data is transmitted serially. Simulation and synthesis are performed on Xilinx ISE. Area occupied by the compressor is 83% of the total LUT-FF pairs which is quite considerable, and power consumed is 0.014 W which can make the overall compressor optimized. The delay taken by the compressor is 3.324 ns. Lesser the delay more fast the compression takes place.
机译:本文实现了称为LOG2子带压缩的无损生物信号压缩方法。 XOR-LOG2子带压缩,其中比较了两个数据样本以识别它们之间的差异。 这种压缩技术适用于两个随机的24位生物医学信号。 一个块是当前数据,其具有要压缩的数据,并且先前的数据最初没有值。 有四个案例,其中要压缩的比特数为8,14,20和26位。 在某些计数上发生压缩,截至10,16,22和28。压缩数据串行传输。 在Xilinx ISE上进行仿真和合成。 压缩机占据的区域是总LUT-FF对的83%,非常相当相当相当,并且消耗的功耗为0.014W,这可以使整体压缩机优化。 压缩机造成的延迟为3.324 ns。 较小的延迟更快地进行压缩。

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