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Compressive sensing measurement matrix construction based on improved size compatible array LDPC code

机译:基于改进尺寸兼容数组LDPC码的压缩感知测量矩阵构造

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ISC-array LDPC code matrix is evolved from SC-array LDPC code matrix to improve compressive sensing performance for large-size sparse signal. When is a prime number, no repetitive row occurs in the shift index of SC-array LDPC code matrix, ISC-array LDPC code matrix performs comparably with SC-array LDPC code matrix. When is a non-prime number, some repetitive rows will appear in the shift index of SC-array LDPC code matrix, which results in more 4-cycles and decreases the compressive sensing performance. ISC-array LDPC code matrix outperforms SC-array LDPC code matrix by effectively reducing or even eliminating the repetitive rows according to their distribution rule, 4-cycles are removed to the maximum extent. ISC-array LDPC code matrix qualifies for compressive sensing because of satisfying RIP well. It also has good quasi-cyclic structure and supports arbitrary code lengths. The simulations verify that the optimised ISC-array LDPC code matrix is advantageous in the image reconstruction quality, the robustness to noise performance and the algorithm complexity.
机译:ISC阵列LDPC代码矩阵是从SC阵列LDPC代码矩阵发展而来的,以提高大尺寸稀疏信号的压缩感测性能。当为质数时,SC阵列LDPC码矩阵的移位索引中没有重复行,ISC阵列LDPC码矩阵的性能与SC阵列LDPC码矩阵相当。当为非素数时,SC阵列LDPC码矩阵的移位索引中将出现一些重复的行,这将导致更多的4个周期并降低压缩感测性能。 ISC阵列LDPC代码矩阵通过有效地减少甚至消除重复行的分布规则,从而胜过SC阵列LDPC代码矩阵,最大程度地消除了4个循环。由于很好地满足了RIP,ISC阵列LDPC码矩阵有资格进行压缩感测。它还具有良好的准循环结构,并支持任意代码长度。仿真结果表明,优化后的ISC阵列LDPC码矩阵在图像重建质量,噪声性能的鲁棒性和算法复杂度方面具有优势。

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