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- W1787865342 abstract "In this brief, we propose high-throughput digit-level systolic structure for area-delay-efficient implementation of multiplier over $mbox{GF}(2^{m} ) $ based on irreducible trinomials. We have proposed a digit-level multiplication algorithm, which allows us to compute a set of $d$ (where $d$ is the digit size) partial products in parallel in each processing element (PE) during each cycle and accumulate them across the systolic pipeline in reduced form. To enhance the throughput rate of the proposed structure, we feed the reduced operands and accumulated partial products to the PEs by independent systolic channels that reduces the critical path to $(T_{!A}+T_{X}+T_{!R})$ , where $T_{!A}$ , $T_{X}$ , and $T_{!R}$ refer to the propagation delays of AND gate, xor gate, and bit register, respectively. From synthesis results, it is found that the proposed multiplier involves significantly lower area–time complexity and higher throughput than the existing competing designs." @default.
- W1787865342 created "2016-06-24" @default.
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- W1787865342 date "2015-05-01" @default.
- W1787865342 modified "2023-09-23" @default.
- W1787865342 title "High-Throughput Digit-Level Systolic Multiplier Over <inline-formula> <tex-math notation=LaTeX>$mbox{GF}(2^{m})$</tex-math></inline-formula> Based on Irreducible Trinomials" @default.
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- W1787865342 doi "https://doi.org/10.1109/tcsii.2014.2386260" @default.
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