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Complex block floating-point format with box encoding for wordlength reduction in communication systems

机译:带盒编码的复杂块浮点格式,用于减少通信系统中的字长

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We propose a new complex block floating-point format to reduce implementation complexity. The new format achieves wordlength reduction by sharing an exponent across the block of samples, and uses box encoding for the shared exponent to reduce quantization error. Arithmetic operations are performed on blocks of samples at time, which can also reduce implementation complexity. For a case study of a baseband quadrature amplitude modulation (QAM) transmitter and receiver, we quantify the tradeoffs in signal quality vs. implementation complexity using the new approach to represent IQ samples. Signal quality is measured using error vector magnitude (EVM) in the receiver, and implementation complexity is measured in terms of arithmetic complexity as well as memory allocation and memory input/output rates. The primary contributions of this paper are (1) a complex block floating-point format with box encoding of the shared exponent to reduce quantization error, (2) arithmetic operations using the new complex block floating-point format, and (3) a QAM transceiver case study to quantify signal quality vs. implementation complexity tradeoffs using the new format and arithmetic operations.
机译:我们提出了一种新的复杂块浮点格式,以减少实现的复杂性。新格式通过在整个样本块中共享指数来实现字长减少,并对共享指数使用盒编码以减少量化误差。同时对样本块执行算术运算,这也可以降低实现的复杂性。对于基带正交幅度调制(QAM)发射器和接收器的案例研究,我们使用新方法来表示IQ样本,从而量化了信号质量与实现复杂性之间的权衡。使用接收器中的误差矢量幅度(EVM)来测量信号质量,并根据算术复杂度以及存储器分配和存储器输入/输出速率来测量实现复杂性。本文的主要贡献是(1)使用共享指数的盒编码来减少量化误差的复杂块浮点格式,(2)使用新的复杂块浮点格式的算术运算,以及(3)QAM收发器案例研究,使用新的格式和算术运算来量化信号质量与实现复杂度之间的权衡。

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