Lead C++ Systems Engineer: Real-Time Predictive Analysis & Visualization Suite
Budget: $1,000 – $3,000 NZD
I am seeking an expert C++ developer to architect a premium, low-latency internal suite for real-time data visualization and predictive modeling within a high-speed 3D environment. This is a long-term project requiring a "hardened" architecture that prioritizes mathematical stability and system integrity.
Core Technical Requirements:
Internal Architecture & Security: Development of a secure loader utilizing a kernel-level driver for stable in-process integration.
Predictive Modeling: A standalone core capable of deterministic, frame-perfect trajectory prediction for high-velocity objects under variable frame rates.
Humanized Simulation: Implementation of a "realism layer" that reflects human motor variability to ensure statistically consistent output over time.
Advanced UI/UX: A sleek, modern DirectX-based overlay with deep customization for individual object profiles (e.g., specific physics for projectile vs. hitscan simulations).
Technical Specifications:
Compatibility: Native support for Windows 10/11 (Intel/AMD architectures).
Optimization: Must maintain zero impact on host process frame times while handling 5-10 concurrent objects.
Deployment: Support for both Global and CN regional environments.
Core Technical Requirements:
Internal Architecture & Security: Development of a secure loader utilizing a kernel-level driver for stable in-process integration.
Predictive Modeling: A standalone core capable of deterministic, frame-perfect trajectory prediction for high-velocity objects under variable frame rates.
Humanized Simulation: Implementation of a "realism layer" that reflects human motor variability to ensure statistically consistent output over time.
Advanced UI/UX: A sleek, modern DirectX-based overlay with deep customization for individual object profiles (e.g., specific physics for projectile vs. hitscan simulations).
Technical Specifications:
Compatibility: Native support for Windows 10/11 (Intel/AMD architectures).
Optimization: Must maintain zero impact on host process frame times while handling 5-10 concurrent objects.
Deployment: Support for both Global and CN regional environments.