One-click install
npx skills add https://github.com/gganbukim1/myskills --skill production-scheduling-gganbukim1
Or copy as Structured Prompt for Agent▼
Please help me install this Agent Skill.
Skill: production-scheduling
Source: https://github.com/gganbukim1/myskills/tree/main/production-scheduling
Command: npx skills add https://github.com/gganbukim1/myskills --skill production-scheduling-gganbukim1

SYSTEM DOCUMENTATION & REQUIREMENTS

What problem does it solve?

This Skill solves the challenge of turning ERP/MRP work orders into a workable, finite-capacity production schedule that meets due dates while maximizing throughput at the bottleneck and minimizing costly changeovers and disruptions.

Core Features & Use Cases

  • Bottleneck-first scheduling: Identify the true constraint using utilization and OEE cues, then subordinate other decisions to keep the constraint fed and running (DBR/TOC logic).
  • Setup- and sequence-aware optimization: Use dispatching rules (EDD/SPT/setup-aware EDD) plus a setup matrix with heuristics (nearest-neighbor + 2-opt) to reduce changeover time and cost while preserving due-date compliance.
  • Disruption and re-sequencing framework: Rapidly re-plan around breakdowns, material shortages, quality holds, and absenteeism using frozen-window and stability-lock policies.
  • ERP/MES interaction patterns: Convert routings, BOMs, lead times, and operation dependencies into shop-floor execution and close the plan-vs-reality loop using MES confirmations.

Quick Start

Use the production-scheduling Skill to re-sequence an upcoming finite-capacity horizon for the constraint line, optimize changeovers using your setup matrix, and apply a disruption re-planning framework with a frozen window for committed work.

Frequently Asked Questions about production-scheduling

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

FAQPage Schema
How do I create a finite capacity production schedule from ERP work orders?▼

Finite capacity production scheduling converts ERP/MRP work orders into workable schedules by prioritizing the true bottleneck, optimizing sequencing and changeovers, and validating due dates to maximize throughput. It applies DBR/TOC logic to keep the constraint fed.

What is the best way to optimize changeover sequencing in discrete manufacturing?▼

Changeover optimization in discrete manufacturing uses dispatching rules like EDD or SPT alongside a setup matrix with nearest-neighbor and 2-opt heuristics, reducing changeover time and cost while preserving due-date compliance across multiple production lines.

How does bottleneck management work when re-planning under production disruptions?▼

Bottleneck management during disruption re-planning identifies the true constraint using OEE and utilization cues, then subordinates other operations to keep it running, applying frozen-window and stability-lock policies to manage breakdowns, material shortages, or absenteeism.

Can I use MES confirmations to close the plan-versus-reality feedback loop?▼

MES confirmations close the plan-versus-reality feedback loop by validating shop-floor execution against the finite capacity schedule, converting routings, BOMs, lead times, and operation dependencies into actionable rolling re-plans for continuous alignment.

How do I handle job insertion and campaign versus mixed-model decisions in batch manufacturing?▼

Batch manufacturing scheduling handles job insertion and campaign versus mixed-model decisions by applying finite capacity constraints and bottleneck-first logic, ensuring sequence-aware optimization stabilizes production flow while meeting committed due dates.

When should I apply a frozen window in production scheduling?▼

A frozen window in production scheduling should be applied to stabilize committed work and govern rolling re-plans, preventing constant re-sequencing of immediate operations while allowing rapid adjustments for breakdowns, quality holds, or material shortages further out.