robotics-figure-workflow

Redesign robotics and CS paper figures for IEEE double-column layouts.

Updated Aug 27, 2026
One-click install
npx skills add https://github.com/yuewangg/agent-research-skills --skill robotics-figure-workflow
Or copy as Structured Prompt for Agent▼
Please help me install this Agent Skill.
Skill: robotics-figure-workflow
Source: https://github.com/yuewangg/agent-research-skills/tree/main/skills/robotics-figure-workflow
Command: npx skills add https://github.com/yuewangg/agent-research-skills --skill robotics-figure-workflow

SYSTEM DOCUMENTATION & REQUIREMENTS

What problem does it solve?

Robotics researchers struggle to produce accurate, publication-ready figures that communicate the right evidence without violating IEEE readability and evidence integrity standards.

Core Features & Use Cases

  • Figure triage and structure: Determine whether a figure is method, result, qualitative, or hardware/system so it answers a single research question.
  • Robotics-appropriate figure design: Plan navigation, SLAM, and control/RL figure types such as trajectory overlays, APE/RPE plots, ablation/robustness panels, and claim-evidence layouts.
  • Evidence integrity and audit readiness: Enforce unit/legend/caption quality, uncertainty reporting, axis/frame specification, and guardrails against imagined or misleading visuals.

Quick Start

Use the robotics-figure-workflow skill to redesign my proposed SLAM results figure for an IEEE double-column submission, ensuring it includes coordinate-frame details, uncertainty/conditions, and an audit-ready caption.

Frequently Asked Questions about robotics-figure-workflow

High-intent search queries and answers about installing and using this skill.

FAQPage Schema
How do I create publication-quality SLAM plots for an IEEE double-column paper?▼

To create publication-quality SLAM plots for an IEEE double-column paper, you need to structure trajectory overlays and APE/RPE plots with readable labeling, coordinate-frame details, and vector-first output to satisfy evidence integrity standards.

What is the best way to design ablation charts and training curves for robotics research?▼

The best way to design ablation charts and training curves for robotics research is to apply figure triage first, ensuring the visual answers a single research question while disclosing uncertainty, conditions, and units for audit readiness.

How do I ensure my navigation and control/RL figures maintain evidence integrity?▼

To ensure navigation and control/RL figures maintain evidence integrity, enforce axis and frame specifications, include uncertainty reporting, and apply an audit checklist covering legends, alignment, and caption rigor to avoid misleading visuals.

Can I redesign existing qualitative robotics figures to meet IEEE formatting standards?▼

Yes, you can redesign existing qualitative robotics figures to meet IEEE formatting standards by re-evaluating the figure structure to determine if it is method, result, or hardware focused, then adjusting it for readable labeling and double-column layouts.

Why does my robotics paper figure fail to communicate experimental evidence clearly?▼

Your robotics paper figure may fail to communicate experimental evidence clearly if it acts as a decorative visual rather than a structured claim-evidence layout, lacking proper condition disclosure and rigorous captions.

Do I need specific software dependencies to generate IEEE-ready robotics trajectory plots?▼

No specific software dependencies are required to generate IEEE-ready robotics trajectory plots, as the workflow focuses on figure triage, structural planning, and audit checklists rather than tying to a specific plotting library.