Innovazione e gestione dei programmi sincronizzata e collaborativa per i nuovi programmi
Aerospaziale e difesa
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Industria automobilistica e trasporti
Integration of mechanical, software and electronic systems technologies for vehicle systemsEsplora il settore
Prodotti di consumo e vendita al dettaglio
Innovazione dei prodotti attraverso la gestione efficace di processi integrati di formulazione, confezionamento e produzioneEsplora il settore
Elettronica e semiconduttori
Lo sviluppo di nuovi prodotti si avvale dei dati per migliorare la qualità e la redditività riducendo costi e time-to-marketEsplora il settore
Energia e utilità
Supply chain collaboration in design, construction, maintenance and retirement of mission-critical assetsEsplora il settore
Soluzioni per macchinari industriali e attrezzature pesanti
Integration of manufacturing process planning with design and engineering for today’s machine complexityEsplora il settore
Insurance & Financial
Visibility, compliance and accountability for insurance and financial industriesExplore Industry
Innovazione nella cantieristica navale per ridurre i costi di sviluppo delle future flotte in modo sostenibileEsplora il settore
Media & Telecommunications
Siemens PLM Software, a leader in media and telecommunications software, delivers digital solutions for cutting-edge technology supporting complex products in a rapidly changing market.Explore Industry
Apparecchiature medicali e farmaceutica
"Innovazione di prodotto personalizzata" attraverso la digitalizzazione per soddisfare la domanda del mercato e ridurre i costiEsplora il settore
Faster time to market, fewer errors for Software DevelopmentExplore Industry
Small & Medium Business
Remove barriers and grow while maintaining your bottom line. We’re democratizing the most robust digital twins for your small and medium businesses.Explore Industry
Develop your smart mobile robots
Six key pillars of AMR and AGV that manufacturers cannot overlook
Automated guided vehicles (AGV) / Autonomous mobile robots (AMR) promise flexibility, productivity, maneuverability and safety while minimizing operational costs in the industry, warehouse, fulfillment centers, and civil/domestic applications.
However, developing an AGV that can be customized to meet the needs of various environments and driving spaces is complex and expensive. AGV/AMR original equipment manufacturers (OEMs) face several engineering challenges due to the intricate nature of the autonomous systems, the tight integration between physical hardware and control algorithms. Tight integration of automation, energy management, environment, sensor and operation expertise during design is necessary to realize highly flexible and scalable AGV/AMRs.
Join this system engineering webinar and learn about the six key pillars that are integral to the success of AGV/AMR.
You will learn to:
Modern mobile robots including Automatic Guided Vehicle (AGV) and Autonomous Mobile Robots (AMR) are electrified vehicles that operate on battery. Efficient management of fleet autonomy and vehicle charging strategy is important to maintain a steady throughput.
Leading AGV/AMR manufacturers utilize system simulation software to predict battery performance during the work cycle with the actual load and speed of the vehicle. Register for this webinar and learn which parameters influence robots’ autonomy and discharging.
Increasing AGV/AMR speed has a direct impact on vehicle stability and operational control. Using system simulation software, engineers can evaluate multiple scenarios (changing the shape of the trajectory, velocity, etc.) before committing to a prototype. Register for this webinar and discover how insights from simulation help to optimize stability, speed, and control of AGV/AMR.
The virtual commissioning of an AGV/AMR digital mockup helps to develop control strategy in a risk-free environment. The digital model, when coupled with inputs from a real sensor, can be used for AGV monitoring to perform predictive maintenance tasks.
Register for this webinar to discover the virtual commissioning technique that enables manufacturers to roll out a concurrent mechanical, software, E/E hardware design process and replace expensive and time-consuming physical tests with early virtual validation of controls.
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