Javascript must be enabled to continue!
MCT-TRNG: Multi-Channel Tetrahedral TRNG via Metastability-Enhanced Entropy with 2.2 Gbps Throughput
View through CrossRef
True random number generators (TRNGs) extract randomness from physical phenomena to produce inherently unpredictable bitstreams. Owing to their strong cryptographic properties, TRNGs are fundamental components for establishing trusted roots in secure systems. However, the throughput of current TRNGs falls short of meeting the increasing demands posed by high-speed encryption and rapidly growing data volumes. To solve this issue, in this article, we propose a multi-channel tetrahedral TRNG (MCT-TRNG) via metastability-enhanced entropy with ultra-high throughput. We first propose a novel entropy source structure of a metastability-enhanced ring oscillator, which extracts randomness in unstable signals by switching transmission paths. Then, we introduce a feedback XOR ring to improve the degree of signal chaos. On this basis, we propose a tetrahedral post-processing structure with four channels to produce independent parallel outputs. The experiments show that the generated random sequences have successfully passed the NIST and AIS-31 tests. The MCT-TRNG incurs only 18 LUTs with a throughput of 2.2 Gbps on Xilinx Artix-7 FPGA. Compared with existing works, our design has the highest throughput, yielding promising application potential.
Association for Computing Machinery (ACM)
Title: MCT-TRNG: Multi-Channel Tetrahedral TRNG via Metastability-Enhanced Entropy with 2.2 Gbps Throughput
Description:
True random number generators (TRNGs) extract randomness from physical phenomena to produce inherently unpredictable bitstreams.
Owing to their strong cryptographic properties, TRNGs are fundamental components for establishing trusted roots in secure systems.
However, the throughput of current TRNGs falls short of meeting the increasing demands posed by high-speed encryption and rapidly growing data volumes.
To solve this issue, in this article, we propose a multi-channel tetrahedral TRNG (MCT-TRNG) via metastability-enhanced entropy with ultra-high throughput.
We first propose a novel entropy source structure of a metastability-enhanced ring oscillator, which extracts randomness in unstable signals by switching transmission paths.
Then, we introduce a feedback XOR ring to improve the degree of signal chaos.
On this basis, we propose a tetrahedral post-processing structure with four channels to produce independent parallel outputs.
The experiments show that the generated random sequences have successfully passed the NIST and AIS-31 tests.
The MCT-TRNG incurs only 18 LUTs with a throughput of 2.
2 Gbps on Xilinx Artix-7 FPGA.
Compared with existing works, our design has the highest throughput, yielding promising application potential.
Related Results
S45. EFFICACY OF A 4-SESSION METACOGNITIVE TRAINING FOR SCHIZOPHRENIA, DEPRESSION, AND BELIEF FLEXIBILITY
S45. EFFICACY OF A 4-SESSION METACOGNITIVE TRAINING FOR SCHIZOPHRENIA, DEPRESSION, AND BELIEF FLEXIBILITY
Abstract
Background
Metacognitive training (MCT) was developed to increase awareness of cognitive biases (Moritz & Woodward,...
Abstract 009: Genetically Modified Probiotics for Oral Delivery of Angiotensin-(1-7) Confers Protection Against Pulmonary Hypertension
Abstract 009: Genetically Modified Probiotics for Oral Delivery of Angiotensin-(1-7) Confers Protection Against Pulmonary Hypertension
Background:
Previous studies have established that activation of the members of the vasoprotective axis of the renin-angiotensin system [Angiotensin Converting Enzyme 2...
High-efficiency TRNG Design Based on Multi-bit Dual-ring Oscillator
High-efficiency TRNG Design Based on Multi-bit Dual-ring Oscillator
Unpredictable true random numbers are required in security technology fields such as information encryption, key generation, mask generation for anti-side-channel analysis, algorit...
Musical and verbal auditory cognition : child development and neurophysiological markers
Musical and verbal auditory cognition : child development and neurophysiological markers
Cognition auditive verbale et musicale : développement chez l’enfant et marqueurs neurophysiologiques
Les processus auditifs centraux jouent un rôle essentiel dans ...
TRNG Entropy Model in the Presence of Flicker FM Noise
TRNG Entropy Model in the Presence of Flicker FM Noise
Flicker Frequency Modulated (FM) noise, which influences free-running Ring Oscillators (ROs), can make a substantial contribution to the entropy generated by RO-based True Random N...
En skvatmølle i Ljørring
En skvatmølle i Ljørring
A Horizontal Mill at Ljørring, Jutland.Horizontal water-mills have been in use in Jutland since the beginning of the Christian era 2). But the one here described shows so close a c...
A TRNG Implemented Using a Soft-Data Based Sponge Function within a Unified Strong PUF Architecture
A TRNG Implemented Using a Soft-Data Based Sponge Function within a Unified Strong PUF Architecture
Hardware security primitives including True Random Number Generators (TRNG) and Physical Unclonable Functions (PUFs) are central components to establishing a root of trust in micro...
The Secretome of Brain Endothelial Cells Exposed to the Pyrrolizidine Alkaloid Monocrotaline Induces Astrocyte Reactivity and Is Neurotoxic
The Secretome of Brain Endothelial Cells Exposed to the Pyrrolizidine Alkaloid Monocrotaline Induces Astrocyte Reactivity and Is Neurotoxic
Monocrotaline (MCT) has well-characterized hepatotoxic and pneumotoxic effects attributed to its active pyrrole metabolites. Studies have previously shown that astrocytes and neuro...

