openclaw-mission-control and openclaw-nerve

The two tools are **complements**, as OpenClaw Mission Control provides an orchestration dashboard for AI agent management and collaboration, while OpenClaw Nerve offers a real-time web cockpit for controlling individual agents, monitoring their activities, and visualizing their usage.

openclaw-nerve
44
Emerging
Maintenance 25/25
Adoption 10/25
Maturity 11/25
Community 25/25
Maintenance 13/25
Adoption 10/25
Maturity 11/25
Community 10/25
Stars: 2,153
Forks: 480
Downloads:
Commits (30d): 109
Language: TypeScript
License: MIT
Stars: 183
Forks: 10
Downloads:
Commits (30d): 0
Language: TypeScript
License: MIT
No Package No Dependents
No Package No Dependents

About openclaw-mission-control

abhi1693/openclaw-mission-control

AI Agent Orchestration Dashboard - Manage AI agents, assign tasks, and coordinate multi-agent collaboration via OpenClaw Gateway.

Provides unified visibility and approval-driven governance for multi-team agent operations, with built-in activity audit trails and human-in-the-loop execution controls. Supports both Docker and local deployments with dual authentication modes (bearer token and Clerk JWT), exposing the same operational model through web UI and API-first interfaces. Gateway-aware architecture enables distributed runtime control across local and remote execution environments while maintaining a single system of record for organizations, boards, tasks, and approval workflows.

About openclaw-nerve

daggerhashimoto/openclaw-nerve

Real-time web cockpit for OpenClaw: voice conversations, agent automated kanban board, workspace/file control, sub-agent sessions, inline charts, and usage visibility.

Builds on WebSocket proxying to OpenClaw Gateway while adding real-time file watching via SSE and rich UI rendering for agent outputs—charts, diffs, syntax-highlighted code, and structured tool results rendered natively rather than as text. Supports multi-agent fleet orchestration with per-agent workspaces, memory, and identity management, plus operational primitives like cron scheduling, kanban boards, and session trees that extend beyond conversational interfaces. Frontend uses React 19 with Tailwind and shadcn/ui; backend is Hono on Node.js with optional password auth, local-by-default binding, and Tailscale integration for private remote access.

Scores updated daily from GitHub, PyPI, and npm data. How scores work