research and innovations
research and innovations
research and innovations
Transforming isolated machine networks into shared intelligence to collectively drive a human-centric future of embodied AI.
industry awards & contributions
university partners
Research Papers
Research Papers
research papers

The report presents IoTeX as an end-to-end infrastructure that transforms real-world device data into verifiable inputs for AI. It highlights components like ioID for machine identity and Quicksilver for DePIN data aggregation, positioning IoTeX as the bridge between physical devices and intelligent systems.

The report presents IoTeX as an end-to-end infrastructure that transforms real-world device data into verifiable inputs for AI. It highlights components like ioID for machine identity and Quicksilver for DePIN data aggregation, positioning IoTeX as the bridge between physical devices and intelligent systems.

The report presents IoTeX as an end-to-end infrastructure that transforms real-world device data into verifiable inputs for AI. It highlights components like ioID for machine identity and Quicksilver for DePIN data aggregation, positioning IoTeX as the bridge between physical devices and intelligent systems.

The report highlights IoTeX as a modular Layer-1 and middleware platform that bridges real-world data and AI through verifiable, privacy-preserving computation. It enables trusted device identity, secure data attestation, and scalable pipelines for AI-driven IoT applications.

The report highlights IoTeX as a modular Layer-1 and middleware platform that bridges real-world data and AI through verifiable, privacy-preserving computation. It enables trusted device identity, secure data attestation, and scalable pipelines for AI-driven IoT applications.

The report highlights IoTeX as a modular Layer-1 and middleware platform that bridges real-world data and AI through verifiable, privacy-preserving computation. It enables trusted device identity, secure data attestation, and scalable pipelines for AI-driven IoT applications.

The integration of DePINs with AI agents is a transformative shift in technology. This combination enables smarter, more efficient systems by processing data in real-time and adapting to changing conditions. The QUICKSILVER connectivity layer helps make this integration possible, driving innovation across various industries.

The integration of DePINs with AI agents is a transformative shift in technology. This combination enables smarter, more efficient systems by processing data in real-time and adapting to changing conditions. The QUICKSILVER connectivity layer helps make this integration possible, driving innovation across various industries.

The integration of DePINs with AI agents is a transformative shift in technology. This combination enables smarter, more efficient systems by processing data in real-time and adapting to changing conditions. The QUICKSILVER connectivity layer helps make this integration possible, driving innovation across various industries.

This paper explores using advanced AI hardware to speed up a crucial mathematical operation, helping to make powerful privacy technologies like Fully Homomorphic Encryption and Zero-Knowledge Proofs faster and more practical.

This paper explores using advanced AI hardware to speed up a crucial mathematical operation, helping to make powerful privacy technologies like Fully Homomorphic Encryption and Zero-Knowledge Proofs faster and more practical.

The paper proposes two solutions to protect Ethereum from future quantum computer threats: adding secure transaction types and improving efficiency with advanced cryptography, all while keeping changes minimal and compatible with the current system.

The paper proposes two solutions to protect Ethereum from future quantum computer threats: adding secure transaction types and improving efficiency with advanced cryptography, all while keeping changes minimal and compatible with the current system.

The modular DePIN infra is a community-driven approach to managing physical resources like energy and data. It uses interchangeable building blocks to create customized systems, making it easier and more collaborative, but also requires experts to work together to overcome challenges.

The modular DePIN infra is a community-driven approach to managing physical resources like energy and data. It uses interchangeable building blocks to create customized systems, making it easier and more collaborative, but also requires experts to work together to overcome challenges.

IoTeX 2.0 is a three-year plan to expand its network by creating a flexible platform and improving its token system. This aims to make blockchain technology accessible to everyone, supporting innovative projects and connecting real-world devices with digital systems.

IoTeX 2.0 is a three-year plan to expand its network by creating a flexible platform and improving its token system. This aims to make blockchain technology accessible to everyone, supporting innovative projects and connecting real-world devices with digital systems.

IoTeX is a decentralized, privacy-preserving blockchain platform for the Internet of Things, combining scalable rootchain/subchain architecture, fast Roll-DPoS consensus, and advanced cryptography for secure device identity and data integrity.

IoTeX is a decentralized, privacy-preserving blockchain platform for the Internet of Things, combining scalable rootchain/subchain architecture, fast Roll-DPoS consensus, and advanced cryptography for secure device identity and data integrity.

DePIN use blockchain to create community-driven networks, promoting shared ownership and efficient management of resources like data storage and connectivity.

DePIN use blockchain to create community-driven networks, promoting shared ownership and efficient management of resources like data storage and connectivity.

Multi-scalar multiplication, crucial for zero-knowledge proofs, is often slow. Researchers have sped it up using precomputation methods. A recent study improved these methods, making them faster through better organization of precomputed values.

Multi-scalar multiplication, crucial for zero-knowledge proofs, is often slow. Researchers have sped it up using precomputation methods. A recent study improved these methods, making them faster through better organization of precomputed values.

