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Showing 1 to 7 of 7 for “"Computer Arithmetic"”.
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Error-Correcting-Codes in Computer Arithmetic
Made available in DSpace on 2014-12-10T19:07:08Z (GMT). No. of bitstreams: 1 7317303.pdf: 3230254 bytes, checksum: 0224024c93641180a5acace586589d07 (MD5) Previous issue date: 1972
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The testability of regular logic structures
… iterative logic arrays which are widely used in computer arithmetic hardware. The issues of design-for-testability, built-in self-test as well as automatic test generation for these circuits are discussed. The techniques developed are far more powerful and general than those conceived by previous …
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Design of an IEEE double precision floating-point adder/subtractor in GaAs technology
… fundamental and the simplest operation in any computer arithmetic operation. According to the IEEE 754 Standard Format, the resulting architecture based on the addition/subtraction algorithm is mainly divided into two portions - the exponent and the mantissa. In logic design, there are three …
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A Stream-Based In-Line Allocatable Multiplier for Configurable Computing
The growing demand for high-performance computing platforms has pushed the computing community to invent new architectures for processors. Recently, researchers have begun to solve the problem by the implementation of Field-Programming Gate Arrays (FPGAs). FPGAs make it possible to implement …
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GPU-enhanced power flow analysis
This thesis addresses the utilization of Graphics Processing Units (GPUs) to improve the Power Flow (PF) analysis of modern power systems. GPUs are powerful vector co-processors that have been very useful in the acceleration of several computational intensive applications. PF analysis is the …
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Higher Radix Floating-Point Representations for FPGA-Based Arithmetic
… are not optimal for most FPGA-based arithmetic computations. Higher radix representations can therefore be a useful tool for building efficient custom floating-point datapaths on FPGAs.