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    • 1. 发明申请
    • LOW COMPLEXITY OPTIMAL SOFT MIMO RECEIVER
    • 低复杂度最优软MIMO接收机
    • US20090232241A1
    • 2009-09-17
    • US12046747
    • 2008-03-12
    • Mahdi ShabanyRoya Doostnejad
    • Mahdi ShabanyRoya Doostnejad
    • H04L5/12H04B7/02
    • H04B7/0413H04L25/03178H04L25/03318H04L25/067H04L27/38H04L2025/0342H04L2025/03426
    • A low-complexity optimal soft MIMO detector is provided for a general spatial multiplexing (SM) systems with two transmit and NR receive antennas. The computational complexity of the proposed scheme is independent from the operating signal-to-noise ratio (SNR) and grows linearly with the constellation order. It provides the optimal maximum likelihood (ML) solution through the introduction of an efficient Log-likelihood ratio (LLR) calculation method, avoiding the exhaustive search over all possible nodes. The intrinsic parallelism makes it an appropriate option for implementation on DSPs, FPGAs, or ASICs. In specific, this MIMO detection architecture is very suitable to be applied in WiMax receivers based on IEEE 802.16e/m in both downlink (subscriber station) and uplink (base station).
    • 为具有两个发射和NR个接收天线的通用空间复用(SM)系统提供了一种低复杂度最优软MIMO检测器。 所提出的方案的计算复杂度独立于操作信噪比(SNR),并与星座顺序线性增长。 它通过引入有效的对数似然比(LLR)计算方法来提供最佳最大似然(ML)解决方案,避免在所有可能的节点上进行详尽的搜索。 内在的并行性使其成为在DSP,FPGA或ASIC上实现的适当选择。 具体来说,这种MIMO检测架构非常适合于在下行链路(用户站)和上行链路(基站)中基于IEEE 802.16e / m的WiMax接收机中应用。
    • 2. 发明授权
    • Low complexity optimal soft MIMO receiver
    • 低复杂度最优软MIMO接收机
    • US08060811B2
    • 2011-11-15
    • US12046747
    • 2008-03-12
    • Mahdi ShabanyRoya Doostnejad
    • Mahdi ShabanyRoya Doostnejad
    • H03M13/03
    • H04B7/0413H04L25/03178H04L25/03318H04L25/067H04L27/38H04L2025/0342H04L2025/03426
    • A low-complexity optimal soft MIMO detector is provided for a general spatial multiplexing (SM) systems with two transmit and NR receive antennas. The computational complexity of the proposed scheme is independent from the operating signal-to-noise ratio (SNR) and grows linearly with the constellation order. It provides the optimal maximum likelihood (ML) solution through the introduction of an efficient Log-likelihood ratio (LLR) calculation method, avoiding the exhaustive search over all possible nodes. The intrinsic parallelism makes it an appropriate option for implementation on DSPs, FPGAs, or ASICs. In specific, this MIMO detection architecture is very suitable to be applied in WiMax receivers based on IEEE 802.16e/m in both downlink (subscriber station) and uplink (base station).
    • 为具有两个发射和NR个接收天线的通用空间复用(SM)系统提供了一种低复杂度最优软MIMO检测器。 所提出的方案的计算复杂度独立于操作信噪比(SNR),并与星座顺序线性增长。 它通过引入有效的对数似然比(LLR)计算方法来提供最佳最大似然(ML)解决方案,避免在所有可能的节点上进行详尽的搜索。 内在的并行性使其成为在DSP,FPGA或ASIC上实现的适当选择。 具体来说,这种MIMO检测架构非常适合于在下行链路(用户站)和上行链路(基站)中基于IEEE 802.16e / m的WiMax接收机中应用。
    • 3. 发明申请
    • LOW COMPLEXITY OPTIMAL SOFT MIMO RECEIVER
    • 低复杂度最优软MIMO接收机
    • US20120014483A1
    • 2012-01-19
    • US13242808
    • 2011-09-23
    • Mahdi ShabanyRoya Doostnejad
    • Mahdi ShabanyRoya Doostnejad
    • H04L27/06
    • H04B7/0413H04L25/03178H04L25/03318H04L25/067H04L27/38H04L2025/0342H04L2025/03426
    • A low-complexity optimal soft MIMO detector is provided for a general spatial multiplexing (SM) systems with two transmit and NR receive antennas. The computational complexity of the proposed scheme is independent from the operating signal-to-noise ratio (SNR) and grows linearly with the constellation order. It provides the optimal maximum likelihood (ML) solution through the introduction of an efficient Log-likelihood ratio (LLR) calculation method, avoiding the exhaustive search over all possible nodes. The intrinsic parallelism makes it an appropriate option for implementation on DSPs, FPGAs, or ASICs. In specific, this MIMO detection architecture is very suitable to be applied in WiMax receivers based on IEEE 802.16e/m in both downlink (subscriber station) and uplink (base station).
    • 为具有两个发射和NR个接收天线的通用空间复用(SM)系统提供了一种低复杂度最优软MIMO检测器。 所提出的方案的计算复杂度独立于操作信噪比(SNR),并与星座顺序线性增长。 它通过引入有效的对数似然比(LLR)计算方法来提供最佳最大似然(ML)解决方案,避免在所有可能的节点上进行详尽的搜索。 内在的并行性使其成为在DSP,FPGA或ASIC上实现的适当选择。 具体来说,这种MIMO检测架构非常适合于在下行链路(用户站)和上行链路(基站)中基于IEEE 802.16e / m的WiMax接收机中应用。
    • 4. 发明授权
    • Low complexity optimal soft MIMO receiver
    • 低复杂度最优软MIMO接收机
    • US08799751B2
    • 2014-08-05
    • US13242808
    • 2011-09-23
    • Mahdi ShabanyRoya Doostnejad
    • Mahdi ShabanyRoya Doostnejad
    • H03M13/03
    • H04B7/0413H04L25/03178H04L25/03318H04L25/067H04L27/38H04L2025/0342H04L2025/03426
    • A low-complexity optimal soft MIMO detector is provided for a general spatial multiplexing (SM) systems with two transmit and NR receive antennas. The computational complexity of the proposed scheme is independent from the operating signal-to-noise ratio (SNR) and grows linearly with the constellation order. It provides the optimal maximum likelihood (ML) solution through the introduction of an efficient Log-likelihood ratio (LLR) calculation method, avoiding the exhaustive search over all possible nodes. The intrinsic parallelism makes it an appropriate option for implementation on DSPs, FPGAs, or ASICs. In specific, this MIMO detection architecture is very suitable to be applied in WiMax receivers based on IEEE 802.16e/m in both downlink (subscriber station) and uplink (base station).
    • 为具有两个发射和NR个接收天线的通用空间复用(SM)系统提供了一种低复杂度最优软MIMO检测器。 所提出的方案的计算复杂度独立于操作信噪比(SNR),并与星座顺序线性增长。 它通过引入有效的对数似然比(LLR)计算方法来提供最佳最大似然(ML)解决方案,避免在所有可能的节点上进行详尽的搜索。 内在的并行性使其成为在DSP,FPGA或ASIC上实现的适当选择。 具体来说,这种MIMO检测架构非常适合于在下行链路(用户站)和上行链路(基站)中基于IEEE 802.16e / m的WiMax接收机中应用。