
RAPTR®

Improve strategic decision-making with data-driven insights powered by rapid modeling, simulation, analysis, and prototyping.
Mission clarity from every angle – uniting land, sea, air, space, and cyber into one view.
RAPTR® is LMI’s customizable modeling, simulation, and analysis platform designed to support data-driven decision-making across a wide range of mission domains. Built to operate at all security levels, RAPTR® integrates an extensible data library, an intuitive user interface, and advanced visualization tools to enable faster, more accurate analysis of complex operational scenarios. The platform's lightweight, thin-client design ensures that users can access powerful modeling and simulation capabilities without heavy hardware requirements, making it ideal for quick deployment and operational flexibility.
Rapid customization
Modify functionalities 5–10x faster with new software able to be delivered every two weeks, enabling your team to adapt tools in real time as mission needs evolve.
Real-time visualization
Access clear, intuitive visual displays that provide immediate awareness of evolving situations, helping identify opportunities and threats to support timely, informed action.
Informed decision-making
Advanced data-driven simulations and predictive analytics uncover risks, validate strategies, and anticipate outcomes. This gives mission leaders clear, actionable insights for precise, confident critical decisions.
Cross-domain modeling
Simulate complex interactions across multiple domains—space, cyber, land, sea, and air—using a unified engine built to anticipate adversary moves and reveal cascading effects on the mission.


Case Study
RAPTR® Enables Next- Gen Global Communications Force Design
RAPTR® Enables Next- Gen Global Communications Force Design

Perspective
Golden Dome & Beyond: The Future of Missile Defense
Golden Dome & Beyond: The Future of Missile Defense

Perspective
Public-Private Partnerships: Building the Future of Space Commerce through Logistics
Public-Private Partnerships: Building the Future of Space Commerce through Logistics

Perspective
When Golden Dome Hits the Ground: Building a Shield from Earth to Orbit
When Golden Dome Hits the Ground: Building a Shield from Earth to Orbit
RAPTR® is certified at CMMC 2.0 Level 2, ensuring compliance with Department of War security requirements.
RAPTR® supports a variety of mission-critical activities—from optimizing satellite maneuvers and analyzing multi-domain interactions to aiding operational planning and strategic assessments. By enabling agencies to quickly prototype and assess mission concepts with speed and precision, RAPTR® helps them anticipate and respond to emerging challenges. As a flexible, scalable solution, RAPTR® accelerates the decision-making process, empowering agencies to navigate dynamic, high-stakes environments with confidence.
Accelerate cross-domain decision-making
Traditional modeling and simulation tools are inflexible, expensive, and slow, hindering analysis and delaying mission-critical answers. Many tools lack the flexibility to adapt to evolving mission sets. There is a growing need for secure platforms that support rapid analysis, integrate with existing data environments, and deliver insights for tactical, operational, and strategic planning.
RAPTR® provides a customizable modeling, simulation, and analysis platform to accelerate the evaluation of “what if” scenarios, enable real-time simulations, and visualize cross-domain impacts to inform decisions across the mission lifecycle.
RAPTR® provides a customizable modeling, simulation, and analysis platform to accelerate the evaluation of “what if” scenarios, enable real-time simulations, and visualize cross-domain impacts to inform decisions across the mission lifecycle.
Applications_
Customize applications for your mission – or leverage what’s already built
- Quickly analyze satellite orbits and build constellation patterns within a high-performance environment.
- Seamlessly import/export data across RAPTR® tools and access a curated library of unclassified satellites to accelerate mission planning.
- Model satellite flight paths in real time to support mission planning, maneuver analysis, and responsive operations using custom inputs and dynamic orbital scenarios.
- Model satellite flight paths in real time to support mission planning, maneuver analysis, and responsive operations using custom inputs and dynamic orbital scenarios.
- Visualize trends, compare mission scenarios, and uncover operational insights through an intuitive, web-based interface.
- Evaluate space-to-terrain dependencies, identify high-priority assets, and assess system resiliency in contested environments.
- Enhances strategic wargaming by modeling how space assets support ground operations and how degraded space capabilities impact mission effectiveness.
- Enables users to assess performance, identify critical assets, and understand which systems require the most protection.
- Rapidly test a wide range of configurations to identify which factors—and combinations—most impact mission outcomes.
- Analyze mission feasibility and trade-offs for scenarios like rapid cargo delivery, orbital refueling, or lunar transport—assessing time, cost, payload, and trajectory efficiency to guide decisions on mission support, communications, and satellite servicing.
- Leverage a dynamic, multi-user interface into RAPTR®’s agent-based simulation engine (RSIM) to support realistic wargaming, mission exercises, and training.
Configurations_
RAPTR® is deployed through client-tailored configurations, including software and expert support.
Space Warfighting Analysis Center (SWAC) leverages RAPTR® to drive rapid, data backed force design and strategic reviews, enabling mission leaders to assess trade-offs and evaluate satellite resiliency in contested environments.

United States Space Command employs RAPTR® to enhance operational planning and space domain awareness through high fidelity simulations and cross domain visualizations that inform real time decision-making.

Space Warfighting Analysis Center (SWAC) leverages RAPTR® to drive rapid, data backed force design and strategic reviews, enabling mission leaders to assess trade-offs and evaluate satellite resiliency in contested environments.

United States Space Command employs RAPTR® to enhance operational planning and space domain awareness through high fidelity simulations and cross domain visualizations that inform real time decision-making.


Case Study_
RAPTR® Enables Next- Gen Global Communications Force Design
LMI partnered with SWAC to use RAPTR®, our cloud-enabled modeling and simulation platform, to deliver rapid, data-driven force design analysis.
Read case study
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