FIELD: computer engineering, in particular, design of setting units of stoichastic computers. SUBSTANCE: outputs of comparison circuit 5 and NOT gate generate two pulse sequences having uniform distribution in interval [0,1]; second sequence is generated using inversion of first one. When pulses of these sequence are filled with pulses of higher frequency using two NAND gates 6 and 10 (number of higher frequency pulses is uniformly distributed in interval [0,1]), random numbers are generated by shift register 7 with module two adder 8 in feedback circuit. Said units provide elements of two random numbers which distribution is uniform. EFFECT: simultaneous generation of two sequences of random numbers. 2 dwg
Title | Year | Author | Number |
---|---|---|---|
UNIFORM DISTRIBUTION RANDOM NUMBER GENERATOR | 1993 |
|
RU2092892C1 |
WHITE NOISE GENERATOR ( VARIANTS ) | 1997 |
|
RU2120179C1 |
GENERATOR OF N-BIT RANDOM SEQUENCE | 1994 |
|
RU2081450C1 |
UNIFORM-DISTRIBUTION RANDOM PULSE GENERATOR | 1996 |
|
RU2107941C1 |
GENERATOR OF RANDOM N-BIT BINARY NUMBERS | 1994 |
|
RU2080651C1 |
FIBER-OPTICAL SYSTEM FOR SAFE INFORMATION TRANSMISSION | 1995 |
|
RU2100906C1 |
DEVICE FOR CONTROLLING DATA TRANSMISSION OVER RADIO CHANNEL | 1997 |
|
RU2116004C1 |
METHOD OF TRANSMISSION OF DATA PACKS IN GENERAL- PURPOSE COMMUNICATION CHANNEL AND CONTROL DEVICE | 1997 |
|
RU2115246C1 |
RADIO LINE WITH AMPLITUDE-PHASE-MANIPULATED NOISE-TYPE SIGNALS | 1996 |
|
RU2101871C1 |
ERROR DETECTING AND CORRECTING DEVICE | 1996 |
|
RU2109405C1 |
Authors
Dates
1997-06-10—Published
1994-05-10—Filed