对基于多信号Prony算法的广域PSS(Power System Stabilization)研发及实现进行阐述,从广域PSS和传统PSS区别、广域PSS原理、实现构架、在线整定方法和RTDS仿真试验效果分析等几个方面对贵州电网广域PSS研发及实现进行了详细描述,表明该...对基于多信号Prony算法的广域PSS(Power System Stabilization)研发及实现进行阐述,从广域PSS和传统PSS区别、广域PSS原理、实现构架、在线整定方法和RTDS仿真试验效果分析等几个方面对贵州电网广域PSS研发及实现进行了详细描述,表明该装置正确性和对低频振动抑制的有效性。展开更多
A parallel architecture for efficient hardware implementation of Rivest Shamir Adleman(RSA) cryptography is proposed.Residue number system(RNS) is introduced to realize high parallelism,thus all the elements under the...A parallel architecture for efficient hardware implementation of Rivest Shamir Adleman(RSA) cryptography is proposed.Residue number system(RNS) is introduced to realize high parallelism,thus all the elements under the same base are independent of each other and can be computed in parallel.Moreover,a simple and fast base transformation is used to achieve RNS Montgomery modular multiplication algorithm,which facilitates hardware implementation.Based on transport triggered architecture(TTA),the proposed architecture is designed to evaluate the performance and feasibility of the algorithm.With these optimizations,a decryption rate of 106 kbps can be achieved for 1 024-b RSA at the frequency of 100 MHz.展开更多
文摘对基于多信号Prony算法的广域PSS(Power System Stabilization)研发及实现进行阐述,从广域PSS和传统PSS区别、广域PSS原理、实现构架、在线整定方法和RTDS仿真试验效果分析等几个方面对贵州电网广域PSS研发及实现进行了详细描述,表明该装置正确性和对低频振动抑制的有效性。
基金Supported by the Natural Science Foundation of Tianjin (No. 11JCZDJC15800)the National Natural Science Foundation of China(No. 61003306)
文摘A parallel architecture for efficient hardware implementation of Rivest Shamir Adleman(RSA) cryptography is proposed.Residue number system(RNS) is introduced to realize high parallelism,thus all the elements under the same base are independent of each other and can be computed in parallel.Moreover,a simple and fast base transformation is used to achieve RNS Montgomery modular multiplication algorithm,which facilitates hardware implementation.Based on transport triggered architecture(TTA),the proposed architecture is designed to evaluate the performance and feasibility of the algorithm.With these optimizations,a decryption rate of 106 kbps can be achieved for 1 024-b RSA at the frequency of 100 MHz.