Distributed consensus protocol under interstellar communication delay

Revolutionizing distributed systems in high-latency environments through advanced experimental design.

Innovative Research in Distributed Systems

We specialize in developing advanced consensus protocols for high-latency environments through theoretical analysis and simulation experiments, enhancing interstellar communication efficiency.

Two spacecraft with large dish antennas are in deep space surrounded by numerous small, bright stars against a dark background. The spacecraft appear to be similar in design, featuring round dishes and various scientific instruments attached to the bodies.
Two spacecraft with large dish antennas are in deep space surrounded by numerous small, bright stars against a dark background. The spacecraft appear to be similar in design, featuring round dishes and various scientific instruments attached to the bodies.

Distributed Consensus Protocols

Innovative solutions for high-latency environments using advanced theoretical analysis and simulation experiments.

Protocol Analysis

Evaluating consensus protocols performance in interstellar networks with simulation tools and comparative experiments.

A spacecraft with a large dish antenna floating amidst a backdrop of twinkling stars in deep space. The metallic structure of the spacecraft is highlighted by subtle lighting.
A spacecraft with a large dish antenna floating amidst a backdrop of twinkling stars in deep space. The metallic structure of the spacecraft is highlighted by subtle lighting.
Simulation Tools

Constructing interstellar network environments to validate distributed consensus protocol performance under varying conditions.

New design framework for distributed consensus protocols addressing limitations in high-latency environments.

Research Framework
A tall communication tower is equipped with numerous large, round satellite dishes and antennae. The structure is illuminated by red lights against a dark night sky scattered with stars.
A tall communication tower is equipped with numerous large, round satellite dishes and antennae. The structure is illuminated by red lights against a dark night sky scattered with stars.
A large space station with multiple solar panels is floating against a backdrop of space. The station consists of several modular components and is symmetrical in design. The panels are arranged in a grid-like pattern, reflective of light.
A large space station with multiple solar panels is floating against a backdrop of space. The station consists of several modular components and is symmetrical in design. The panels are arranged in a grid-like pattern, reflective of light.

Consensus Protocols

Analyzing and improving distributed consensus in high-latency environments.

A tall communication tower with multiple satellite dishes and antennas arranged in tiers against a clear night sky. The structure is illuminated with artificial lighting, creating a contrast with the dark background, and stars can be faintly seen.
A tall communication tower with multiple satellite dishes and antennas arranged in tiers against a clear night sky. The structure is illuminated with artificial lighting, creating a contrast with the dark background, and stars can be faintly seen.
Simulation Tools

Utilizing ns-3 and omnet++ for validating protocol performance in interstellar networks.

An intricate interstellar scene featuring a bright star illuminating the right side, surrounded by various other smaller stars scattered across the dark cosmic expanse. Wisps of nebulae appear to drift and swirl in the center, creating ghostly shapes against the vastness of space.
An intricate interstellar scene featuring a bright star illuminating the right side, surrounded by various other smaller stars scattered across the dark cosmic expanse. Wisps of nebulae appear to drift and swirl in the center, creating ghostly shapes against the vastness of space.
Comparative Analysis

Evaluating differences between new and traditional consensus protocols like Paxos and Raft.