Nanon Network
Nanon NetworkGithub
  • INTRODUCTION
    • Overview
    • Nanon Foundation
    • Investors
    • Important Links
    • Technical Architecture
      • Chain Abstraction Technology
      • Efficient Block Construction and Validation
      • Decentralized Validation Network
      • Cross-Chain Liquidity Center
      • Game Scenario Optimization
    • Core Features
      • Player-Focused Seamless Interaction Experience
      • Developer-Friendly Tools
      • Enhanced Asset Liquidity Ecosystem
      • High-Performance Support
    • Node System
      • Mini Node Overview
      • Mini Node Key
      • Node Reward Mechanism
      • Cloud Management and Optimization of Mini Nodes
      • Mini-Node User Guide
    • esNNN Token
    • Token Economics of Nanon
      • Nanon Token Overview
      • Core Functions of $NNN Token
      • Applications and Payment Scenarios
      • Nanon Token Distribution
  • Application Scenarios
    • Player Experience Optimization
    • Developer Support
    • Cross-Game Asset Interoperability
    • Financialization of Game Economies
    • Global User Coverage
  • Nanon Eco Overview
    • Main Games in the Ecosystem
  • Getting Started with Nanon
    • Using the Faucet
    • Important Notes
    • Transferring Assets to Nanon
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  • Validator Staking Mechanism
  • Trusted Execution Environment (TEE) Technology
  • Dynamic Reward Distribution
  1. INTRODUCTION
  2. Technical Architecture

Decentralized Validation Network

Nanon Network's decentralized validation network ensures ecosystem security and transparency through the broad participation of validators:

Validator Staking Mechanism

Validators need to stake Nanon tokens to participate in block validation, which also enhances the decentralization of ecosystem governance. Validators with higher staking amounts receive more network rewards, incentivizing their long-term participation.

Trusted Execution Environment (TEE) Technology

The validation network incorporates hardware-level security technology, using isolated Trusted Execution Environments to order and validate transactions, preventing potential malicious attacks and data tampering.

Dynamic Reward Distribution

The system adjusts reward distribution based on validators' contributions and network load. For example, nodes participating in validation during peak periods receive additional rewards, motivating more nodes to join the validation process.

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Last updated 3 months ago