Spezifikation

step by step and structure this into a full IEEE 830 / ISO/IEC/IEEE 29148 style Requirements Specification. This format will include:

  • Introduction

  • System Overview

  • Functional and Performance Requirements

  • Traceability Matrix (linking requirements to test cases)

  • Verification and Validation

  • Compliance Standards

1. Introduction

1.1 Purpose
The purpose of this document is to define the technical requirements for the development, deployment, and acceptance of an Autonomous Mobile Robot (AMR) for indoor industrial applications.

1.2 Scope
This specification applies to the design, integration, and testing of the AMR system to ensure it meets the defined operational, performance, and safety requirements.

1.3 Definitions and Acronyms

  • AMR: Autonomous Mobile Robot

  • FAT: Factory Acceptance Testing

  • SAT: Site Acceptance Testing

  • HMI: Human-Machine Interface

  • MTBF: Mean Time Between Failures


2. System Overview

The AMR is intended to perform autonomous tasks within an industrial environment. It will navigate a predefined map, perform material handling, and detect both static and dynamic obstacles. The robot will feature manual override and emergency stop functions to ensure operator safety.


3. System Requirements

3.1 Functional Requirements

FR-1: Autonomous Navigation
The robot shall autonomously navigate using sensor fusion (LiDAR, IMU, wheel encoders) and localize itself within a mapped environment.

FR-2: Obstacle Detection and Path Replanning
The robot shall detect static and dynamic obstacles, and replan its path with a response time of ≤100 ms.

FR-3: Human-Machine Interaction
The system shall allow manual control and override via an HMI. Emergency stop functions shall immediately halt all operations.

FR-4: Task Execution
The robot shall execute predefined tasks (e.g., material transport) autonomously and return to a charging station when required.

3.2 Performance Requirements

PR-1: Payload Capacity
The robot shall support a minimum payload of 10 kg.

PR-2: Maximum Velocity
The robot shall operate at a maximum velocity of 1.5 m/s.

PR-3: Operational Availability
The robot shall achieve an operational availability of 99%, factoring in preventive maintenance.

PR-4: Positional Accuracy
The system shall achieve a localization accuracy of ±5 mm using sensor fusion techniques.

3.3 Hardware Requirements

HR-1: Safety Sensors
The robot shall include redundant safety sensors (LiDAR, ultrasonic, etc.) to ensure human safety in the vicinity.

HR-2: Power and Endurance
The robot shall be powered by rechargeable batteries, providing at least 8 hours of continuous operation under full load.

HR-3: Computational Resources
The robot shall be equipped with a processing unit capable of handling sensor fusion, localization, and obstacle avoidance algorithms in real-time.

3.4 Software Requirements

SW-1: Remote Monitoring and Diagnostics
The robot shall support remote software updates and diagnostics via secure communication protocols (Ethernet, Wi-Fi).

SW-2: Integration APIs
The robot shall provide documented APIs for integration with existing industrial systems (e.g., Warehouse Management Systems).


4. Verification and Validation

4.1 Factory Acceptance Testing (FAT)
FAT will verify that all functional and performance requirements are met before shipping. The following tests will be performed:

  • Navigation tests to verify autonomous operation.

  • Obstacle detection and path replanning accuracy.

  • Load and speed tests to verify performance.

4.2 Site Acceptance Testing (SAT)
SAT will validate robot operation within the specific industrial environment. Tests include:

  • Performance in the intended operating environment.

  • HMI interaction and manual override functionality.

  • Safety compliance verification.


5. Compliance Standards

The robot shall comply with the following standards:

  • ISO 10218: Safety Requirements for Industrial Robots

  • ISO 13849: Safety of Machinery – Safety-Related Parts of Control Systems

  • IEC 61508: Functional Safety of Electrical/Electronic/Programmable Electronic Safety-Related Systems

  • IEC 62061: Safety of Machinery – Functional Safety of Safety-Related Control Systems


6. Traceability Matrix

Req. ID Requirement Description Test Case ID Verification Method
FR-1 Autonomous navigation with sensor fusion TC-001 FAT – Autonomous Test
FR-2 Obstacle detection and path replanning TC-002 FAT – Obstacle Avoidance
FR-3 Manual control and emergency stop TC-003 SAT – Manual Override Test
FR-4 Task execution and charging TC-004 SAT – Task Sequence Test
PR-1 Payload capacity ≥ 10 kg TC-005 FAT – Load Test
PR-2 Max velocity ≤ 1.5 m/s TC-006 FAT – Speed Test
PR-3 Operational availability ≥ 99% TC-007 SAT – Uptime Test
HR-2 Battery endurance ≥ 8 hours TC-008 FAT – Battery Test

Bewerbungen

1
Entwickler 1
Bewertung
(393)
Projekte
548
40%
Schlichtung
30
57% / 3%
Frist nicht eingehalten
57
10%
Arbeitet
Veröffentlicht: 11 Beispiele
2
Entwickler 2
Bewertung
(15)
Projekte
19
16%
Schlichtung
5
40% / 40%
Frist nicht eingehalten
0
Frei
3
Entwickler 3
Bewertung
(626)
Projekte
985
46%
Schlichtung
33
36% / 36%
Frist nicht eingehalten
98
10%
Arbeitet
Veröffentlicht: 6 Beispiele
4
Entwickler 4
Bewertung
(8)
Projekte
11
0%
Schlichtung
7
29% / 71%
Frist nicht eingehalten
2
18%
Frei
5
Entwickler 5
Bewertung
Projekte
0
0%
Schlichtung
0
Frist nicht eingehalten
0
Frei
6
Entwickler 6
Bewertung
(16)
Projekte
20
10%
Schlichtung
8
38% / 38%
Frist nicht eingehalten
3
15%
Arbeitet
7
Entwickler 7
Bewertung
Projekte
0
0%
Schlichtung
0
Frist nicht eingehalten
0
Frei
8
Entwickler 8
Bewertung
(6)
Projekte
5
0%
Schlichtung
6
0% / 83%
Frist nicht eingehalten
1
20%
Arbeitet
9
Entwickler 9
Bewertung
(16)
Projekte
35
23%
Schlichtung
4
0% / 50%
Frist nicht eingehalten
2
6%
Arbeitet
10
Entwickler 10
Bewertung
(1)
Projekte
2
0%
Schlichtung
1
0% / 100%
Frist nicht eingehalten
0
Frei
Veröffentlicht: 2 Beispiele
11
Entwickler 11
Bewertung
Projekte
0
0%
Schlichtung
0
Frist nicht eingehalten
0
Frei
12
Entwickler 12
Bewertung
(32)
Projekte
33
61%
Schlichtung
1
100% / 0%
Frist nicht eingehalten
1
3%
Frei
Veröffentlicht: 5 Beispiele
13
Entwickler 13
Bewertung
Projekte
0
0%
Schlichtung
0
Frist nicht eingehalten
0
Frei
14
Entwickler 14
Bewertung
Projekte
0
0%
Schlichtung
0
Frist nicht eingehalten
0
Frei
Ähnliche Aufträge
AutoTrade_v4_Arbon-v4 35 - 250 USD
============================================================ GOLD AI INSTITUTIONAL TERMINAL v4.0 - AutoTrade + EA Indikator EDISI GABUNGAN Sinkronisasi MT4 Realtime + Dasbor PWA + AI Multi-TF Menggabungkan MT4 + Server AI Node.js ============================================================ CARA MENJALANKAN (MUDAH): -------------------------- 1. Ekstrak ZIP ke folder manapun (misal: C:\GoldAI\) 2. Buka folder hasil
Looking for someone to reverse/decompile my exe file, pls apply if this is something you can do and let me know how long this will take you to do will send the file to you once it’s something you seems to do
Looking for an experienced MQL5 developer to design and develop a custom Expert Advisor (EA) for MetaTrader 5. The purpose of this EA is not just automated trading, but also to help me better structure, test, and refine my personal trading strategy
Phahla fx boto 30+ USD
99.99% signal accuracy 10-15 trades distribution all currency trade and meta AI assistance on loss[advice] stop and start robot cyber security firewall protection activation code: 20060605TLP20 Please create a trading bot with any logo with the name elevation
Data Integrity 500 - 1000 USD
The trading bot is an automated software system designed to monitor financial markets, execute trades, and manage risk based on predefined strategies. The bot aims to maximize profits while minimizing human intervention and emotional decision-making. Scope: Supports automated trading on selected exchanges (e.g., Binance, Bitget, Coinbase). Executes trades based on technical indicators, signals, or AI models. Provides
ICT_OneTrade_2R 100 - 200 USD
🔥 ICT_OneTrade_2R Precision. Discipline. Consistency. ICT_OneTrade_2R is a professional Expert Advisor designed for traders who value structured execution and controlled risk. This system is built around a fixed Risk-to-Reward ratio of 1:2 (RR 2.0) — meaning every trade is planned with precision: Risk 1 → Target 2. No randomness. No overtrading. Just one high-quality trade per session. ⚙️ Key Features ✔ Fixed RR 1:2

Projektdetails

Budget
30 - 100 USD
Ausführungsfristen
von 1 bis 10 Tag(e)