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On the implementation of efficient channel filters for wideband receivers by optimizing common subexpression elimination methods

机译:通过优化常见子表达式消除方法实现宽带接收机高效信道滤波器

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The most computationally intensive part of a wideband receiver is the channelizer. The computational complexity of linear phase finite impulse response (LPFIR) filters employed in the channelizer is dominated by the number of adders used in the implementation of the multipliers. In this paper, two methods are proposed to efficiently implement the channel filters in a wideband receiver based on common subexpression elimination (CSE). We exploit the fact that a significant amount of redundant multiplications exist in the filter-bank channelizer as it extracts multiple narrowband channels from the wideband signal. By forming three and four nonzero-bit super-subexpressions utilizing redundant identical shifts that exist between a two- nonzero-bit common subexpression (CS) and a third nonzero bit, or between two nonzero-bit CS, the number of adders to implement the channel filters can be reduced considerably. Furthermore, the complexity of the adders is analyzed and design examples of the channel filters employed in the digital advanced mobile phone system (D-AMPS) and the personal digital cellular (PDC) channelizers show that the proposed methods offer considerable reduction in the number of full adders when compared to conventional CSE methods.
机译:宽带接收机中计算量最大的部分是信道器。信道器中采用的线性相位有限冲激响应(LPFIR)滤波器的计算复杂度由乘法器实现中使用的加法器数量决定。在本文中,提出了两种基于公共子表达式消除(CSE)的方法来在宽带接收机中有效地实现信道滤波器。我们利用以下事实:滤波器组信道器中存在大量的冗余乘法,因为它从宽带信号中提取了多个窄带信道。通过利用存在于两个非零位公共子表达式(CS)与第三非零位之间或两个非零位CS之间的冗余相同移位来形成三个和四个非零位超级子表达式,实现加法器的数量通道滤波器可以大大减少。此外,分析了加法器的复杂性,并在数字高级移动电话系统(D-AMPS)和个人数字蜂窝电话(PDC)信道发生器中使用的信道滤波器的设计示例表明,所提出的方法可显着减少信道数量。与常规CSE方法相比,全加法器。

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