A multiuser Ultra Wide Band (UWB) channel suffers seriously from realistic impairments. Among this, multipath fading and interferences, such as Multiple Access Interference (MAI) and Inter Symbol Interference (ISI), t...A multiuser Ultra Wide Band (UWB) channel suffers seriously from realistic impairments. Among this, multipath fading and interferences, such as Multiple Access Interference (MAI) and Inter Symbol Interference (ISI), that significantly degrade the system performance. In this paper, a polar coding technique, originally developed by Arikan, is suggested to enhance the BER performance of indoor UWB based Orthogonal Frequency Division Multiplexing (OFDM) communications. Moreover, Interleave Division Multiple Access (IDMA) scheme has been considered for multiuser detection depending on the turbo type Chip-By-Chip (CBC) iterative detection strategy. Three different models as Symmetric Alpha Stable (SαS), Laplace model and Gaussian Mixture Model (GMM), have been introduced for approximating the interferences which are more realistic for UWB system. The performance of the proposed Polar-coded IDMA OFDM-based UWB system is investigated under UWB channel models proposed by IEEE 802.15.3a working group and compared with Low Density Parity Check (LDPC)-coded IDMA OFDM-based UWB system in terms of BER performance and complexity under the studied noise models. Simulation results show that the complexity of the proposed polar-coded system is much lower than LDPC-coded system with minor performance degradation. Furthermore, the proposed polar-coded system is robust against noise and interferences in UWB indoor environment and gains a significant performance improvement by about 5 dB compared with un-coded IDMA-OFDM-UWB system under the studied noise models.展开更多
在跨介质飞行器进行水下信息交互的诸多场景中,为了进一步提高复杂多变水声环境下水声通信链路的可靠性,提出了一种基于极化码的联合多分支均衡与译码算法(Joint Multi-Branch Equalization and Decoding Algorithm based on Polarizati...在跨介质飞行器进行水下信息交互的诸多场景中,为了进一步提高复杂多变水声环境下水声通信链路的可靠性,提出了一种基于极化码的联合多分支均衡与译码算法(Joint Multi-Branch Equalization and Decoding Algorithm based on Polarization Code,JMED-PC)。与已有均衡与极化码译码间相互独立的方法不同,所提出的算法中多分支均衡与软列表(Soft SC-List,SSCL)译码模块间并非相互独立,而是构成了环路,通过不断地在两个模块间迭代交换软信息,可显著改善均衡和译码的联合性能。仿真结果验证了迭代的有效性,也表明所提算法比已有算法有更好的性能。展开更多
为了进一步提升多级存储单元的纠错性能,提出了一种基于多级存储单元阈值电压分布的Polar码优化设计方法。针对多级存储单元的固有特性,该方法迭代计算各存储单元比特的巴氏参数值优化设计Polar码。分析了不同构造方法对多级存储单元闪...为了进一步提升多级存储单元的纠错性能,提出了一种基于多级存储单元阈值电压分布的Polar码优化设计方法。针对多级存储单元的固有特性,该方法迭代计算各存储单元比特的巴氏参数值优化设计Polar码。分析了不同构造方法对多级存储单元闪存性能的影响,并与文中所构造的Polar码和系统Polar码在多级存储单元信道中的性能进行了比较。仿真结果表明:在多级存储单元信道中,当误码率为10^(-5)时,本文所构造的Polar码与高斯信道下经典巴氏参数法构造的Polar码相比可获得约2 d B增益;当信噪比为21 d B时,与蒙特卡罗法构造的Polar码相比,文中设计的系统Polar码的误码率可提升2个数量级。展开更多
为了提高MLC NAND Flash的抗误码性能,该文提出一种基于优化缩短极化码的MLC NAND Flash差错控制方法。优化缩短极化码通过优化删减图样得到,首先通过比特翻转重排序的方式得到基本删减图样,进而选择具有更低信道容量的冻结比特组成优...为了提高MLC NAND Flash的抗误码性能,该文提出一种基于优化缩短极化码的MLC NAND Flash差错控制方法。优化缩短极化码通过优化删减图样得到,首先通过比特翻转重排序的方式得到基本删减图样,进而选择具有更低信道容量的冻结比特组成优化删减图样,使得到的删减比特全为冻结比特,可以显著提高删减算法的纠错性能。同时,根据MLC单元错误的不对称性,采用码率自适应的码字对FLASH中MSB和LSB进行不等错误保护。仿真结果表明:当误帧率为310-时,优化缩短极化码较相同码长的LDPC码和基本缩短极化码分别约有3.72~5.89 d B和1.47~3.49 d B增益;相比基于同一码率的优化缩短极化码方案,不等错误保护的差错控制方案获得约0.25 d B增益。展开更多
文摘A multiuser Ultra Wide Band (UWB) channel suffers seriously from realistic impairments. Among this, multipath fading and interferences, such as Multiple Access Interference (MAI) and Inter Symbol Interference (ISI), that significantly degrade the system performance. In this paper, a polar coding technique, originally developed by Arikan, is suggested to enhance the BER performance of indoor UWB based Orthogonal Frequency Division Multiplexing (OFDM) communications. Moreover, Interleave Division Multiple Access (IDMA) scheme has been considered for multiuser detection depending on the turbo type Chip-By-Chip (CBC) iterative detection strategy. Three different models as Symmetric Alpha Stable (SαS), Laplace model and Gaussian Mixture Model (GMM), have been introduced for approximating the interferences which are more realistic for UWB system. The performance of the proposed Polar-coded IDMA OFDM-based UWB system is investigated under UWB channel models proposed by IEEE 802.15.3a working group and compared with Low Density Parity Check (LDPC)-coded IDMA OFDM-based UWB system in terms of BER performance and complexity under the studied noise models. Simulation results show that the complexity of the proposed polar-coded system is much lower than LDPC-coded system with minor performance degradation. Furthermore, the proposed polar-coded system is robust against noise and interferences in UWB indoor environment and gains a significant performance improvement by about 5 dB compared with un-coded IDMA-OFDM-UWB system under the studied noise models.
文摘在跨介质飞行器进行水下信息交互的诸多场景中,为了进一步提高复杂多变水声环境下水声通信链路的可靠性,提出了一种基于极化码的联合多分支均衡与译码算法(Joint Multi-Branch Equalization and Decoding Algorithm based on Polarization Code,JMED-PC)。与已有均衡与极化码译码间相互独立的方法不同,所提出的算法中多分支均衡与软列表(Soft SC-List,SSCL)译码模块间并非相互独立,而是构成了环路,通过不断地在两个模块间迭代交换软信息,可显著改善均衡和译码的联合性能。仿真结果验证了迭代的有效性,也表明所提算法比已有算法有更好的性能。
文摘为了进一步提升多级存储单元的纠错性能,提出了一种基于多级存储单元阈值电压分布的Polar码优化设计方法。针对多级存储单元的固有特性,该方法迭代计算各存储单元比特的巴氏参数值优化设计Polar码。分析了不同构造方法对多级存储单元闪存性能的影响,并与文中所构造的Polar码和系统Polar码在多级存储单元信道中的性能进行了比较。仿真结果表明:在多级存储单元信道中,当误码率为10^(-5)时,本文所构造的Polar码与高斯信道下经典巴氏参数法构造的Polar码相比可获得约2 d B增益;当信噪比为21 d B时,与蒙特卡罗法构造的Polar码相比,文中设计的系统Polar码的误码率可提升2个数量级。
文摘为了提高MLC NAND Flash的抗误码性能,该文提出一种基于优化缩短极化码的MLC NAND Flash差错控制方法。优化缩短极化码通过优化删减图样得到,首先通过比特翻转重排序的方式得到基本删减图样,进而选择具有更低信道容量的冻结比特组成优化删减图样,使得到的删减比特全为冻结比特,可以显著提高删减算法的纠错性能。同时,根据MLC单元错误的不对称性,采用码率自适应的码字对FLASH中MSB和LSB进行不等错误保护。仿真结果表明:当误帧率为310-时,优化缩短极化码较相同码长的LDPC码和基本缩短极化码分别约有3.72~5.89 d B和1.47~3.49 d B增益;相比基于同一码率的优化缩短极化码方案,不等错误保护的差错控制方案获得约0.25 d B增益。