$AGREGUS - Portofolio Management powered by AI
Agregus Agent is an autonomous on-chain operative built to remove the friction, stress, and constant monitoring required to thrive in the Solana ecosystem.
15 Questions
A strategic assessment maps your financial profile before the agent is activated.
Hands-Free Alpha
The agent monitors liquidity, volatility, and APY, then adapts without manual intervention.
Execution
Logic
Capital efficiency requires ruthless execution. Agregus constantly tracks lending platforms and AMMs, identifying shifts in APY before the crowd catches on.
Protocol Routing
Compare the venues and calculate execution costs. Shift capital to the strongest setup while avoiding high slippage.
- Kamino: Stable routing
- Meteora: Dynamic liquidity
- MarginFi: Active yield lanes
Slippage & MEV Shield
Built-in protective routing ensures that every transaction is shielded from sandwich attacks, maintaining capital integrity during high-volatility events.
On-Chain Telemetry
The agent scrapes real-time on-chain data to detect shifts in liquidity, volatility, and APY across the most dominant Solana protocols.
Algorithmic Precision
By removing human emotion and latency from the equation, Agregus locks in yield compounding at an institutional pace. Execution is triggered purely by threshold math.
Launch
Signal
The agent activates through a comprehensive onboarding questionnaire designed to map strategy alignment, protocol permissions, and risk boundaries.
Onboarding Inputs
- Strategy alignment: aggressive or conservative
- Protocol governance: choose allowed venues
- Risk parameters: drawdown and collateral ratios
- Capital objective: growth, protection, or balance
Agent Activation Lane
Users complete the questionnaire first. Once the AI understands your financial DNA, the agent can operate as a personalized digital asset manager.
V2 Roadmap
Future deployments will integrate cross-chain liquidity tracking and advanced MEV protection, turning the agent into a completely adaptive yield engine.
Agregus will scan EVM and SVM environments simultaneously, abstracting away bridging friction to create a unified algorithmic compounding engine.