Scenario-based Flight Training Simulation with robust Presagis solutions

Global flight simulator market is sky-rocketing and projected to reach $7.7 billion by 2025 with a CAGR of 5.2% from 2019. With the increasing demand for commercial and military pilots, virtual flight training and certify methods are being adopted for aviation safety assurance and to cut cost for pilot training.

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Flight simulators are used to train pilots of commercial aircrafts, military aircrafts, helicopter simulators and Unmanned Aerial Vehicles (UAVs). Growth of the aviation industry is driven by the rise in global air traffic. Rise in demand for aircrafts and pilots acts as a stimulus for the growth of flight simulator market. With flight training simulators, the pilots are trained to handle critical system failure to ensure the success mission execution with prioritized safety. Flight training develops situational awareness to recognize certain conditions to anticipate coming situations. Additionally, pilots use judgement, communication and task prioritization tools during a flight.

Aviate, Navigate, Communicate is the golden rule for pilots

For instance, the pilot-in-command of an aircraft operates within the Instrument Flight Rules (IFR) by relying on the on-board flight instruments and equipment to safely complete the mission. Critical system malfunction is not ideal. However, complete electrical failure can hinder with the navigation operations as well as disrupt the communication system. In such a case, the pilot’s judgement, knowledge and task management skills are vital as it determines the mission outcome. Without the navigation and communication systems, the pilot is required to aviate for a successful completion of the mission. As per the golden rule, pilots should prioritize aviation above navigation and communication.

Flight simulators train pilots to handle dynamic real-life scenarios. It does help in the development of aforementioned skills that pilots can use in such scenarios. Dynamic training is beneficial for aircrew, civilian operators and military mission training operations.

Modern flight training includes flight simulators built on high fidelity & high-quality modules like Presagis’ FlightSIM and HeliSIM solutions maximize efficient training with reduced costs and risks. The training curriculum includes various scenarios, maneuvers, emergency procedures, and so on. In certain cases, pilots might be underprepared to face critical never seen situations. But, with the skills gained from flight training, pilots are capable of handling real-world scenarios.

Let’s consider a slung load transport mission. Operating a helicopter in a hostile environment with a slung load is a tough task. With added interactions with ground control, other aircrafts and hostile forces, the pilot is in for a complex mission with rapid change of events. Training instructors and mission planners are required to replicate such dynamic scenarios with unexpected elements to prepare the pilot for scenarios that are beyond the operation of the aircraft.

To train the pilots in a flexible scenario environment, operators prefer using a representative aircraft simulation model and focus their resources on the design, execute and debrief customized training scenarios for the mission. A representative aircraft model will enable the pilot to focus on the successful mission completion without the distraction of low-quality aircraft models.

Creating a representative aircraft model is effectively done with subjective validation of the simulated aircraft and an experienced pilot. This method highlights specific aircraft behaviors and phenomena for the pilot to learn, recognize and anticipate. For example, with a conventional rotorcraft, pilots expect a decrease in the power required to hover in the proximity to the ground or flying through effective translational lift speed range produces a particular dynamic response. These cues are easily tuned, modeled, and simulated allowing pilots to focus on skill development.

Presagis provides easy-to-use and intuitive graphical user interface useable in multi-disciplinary aircraft design and modelling through FlightSIM and HeliSIM solutions. Users with full data or limited data access hold the provision to create high fidelity or representative aircraft models that can be customized and integrated into dynamic environments.

Applications of Presagis’ FlightSIM & HeliSIM solutions

Advanced technologies for flight simulation training has come a long way in the past decade. These simulators hold functionalities for different types of aircraft flights, cockpits and systems. Flight simulators enable users to easily configure the aircraft flight systems and dynamics with specifications such as rotor blade characteristics, aerodynamics coefficients, environmental parameters, ground interactions and more without any coding.

These solutions are an integral part of flight simulators for fixed wing and rotary wing used by both military and civil class aircrafts. The simulators are used as:

  1. Training devices for pilots and navigators
  2. Engineering test beds by R&D teams
  3. Air traffic management training devices
  4. Wargaming simulators of various degrees, simulate CI, C2, C4I systems etc. and more

Benefits of Presagis’ FlightSIM & HeliSIM solutions

  • Intuitive UI for multi-disciplinary team: Easily simulate the flight models and systems using the enhanced user interface. Tools to view, compare, and modify your model without any coding.
  • Flexible interface to add data packages in any format: Freedom to add data packages, regardless of the format with the solution interface.
  • System simulations: Simulate and configure the Automatic Flight Control Systems (AFCS), gear box, radio navigation, and many more systems.
  • Rapid Integration: Connect to any simulation framework out-of-the-box through CIGI, HLA and DIS. Easily integrate FSTD with third-party software as well.
  • Slung load simulation model (with HeliSIM): Design, configure and hook up a load to the model. Configure the aerodynamic characteristics of the slung load.

Transforming the Aerospace & Defense landscape with industry-specific experiences for enhanced efficiency with digital continuity

Customer expectations are growing with the need for lower costs, higher quality, increased capabilities and the ever-growing complexity making it even more challenging for manufacturers. Complex system requirements challenges OEMs and suppliers to amplify their creativity, collaboration and innovation by upgrading to the factory of the future focused on improved efficiency and production agility. New approaches towards conception, designing, manufacturing, validation and sustenance are required for new air, space and defense vehicles.

Aerospace & Defense companies face a spectrum of challenges as well as growth opportunities with the continued growth of commercial aviation and an increase in the defense budget. With the increasing number of projects, there is an increase in Request for Proposals’ (RFPs) but manufacturers have less time to respond to complex RFPs for multiple components in a competitive environment for better customer experience.

Dassault Systèmes provides a portfolio of industry-specific solutions through the 3DEXPERIENCE platform for Aerospace & Defense manufacturers and suppliers to transform the traditional process with new and latest technologies.

Powered by Dassault Systèmes’ 3DEXPERIENCE platform, EDS Technologies provides industry solution experiences to transform your business processes with enhanced efficiency and digital continuity:

  1. Engineered to Fly accelerates A&D supplier process from idea to delivery with enhanced margins
  2. Co-Design to Target delivers aerospace programs ‘On specification’, ‘On- time’ and ‘On-Budget’

These solutions enable:

  1. Driven & Controlled Execution: Displays the status of current proposals and KPIs regarding costs and risks to enable process visibility. Project execution is driven in a connected process. The intellectual property is secured with traceability for authorities to manage collaborative efforts with multiple customers in a single source environment to ensure OEM certifications.
  2. Operational Efficiency: Predefined proposal templates, automated routing and tracking, clear view of projects to implement, accessibility to design and manufacturing components and collaboration with OEMs help streamline the whole process.
  3. Digital Continuity: From design engineering to manufacturing, best in class engineering tools are in place with quality and efficiency in a controlled environment to maintain digital continuity.

Engineered to Fly

Engineered to Fly is tailored to the aerospace industry with essential features and functionalities. It includes robust tools to help A&D businesses ‘Built-to-print’ or ‘Design-and-build’ to manage their whole business process. Some of the capabilities include addressing RFPs promptly, executing the projects with APQP and quickly adapting new changes in the current manufacturing process.

Project execution is driven and controlled with real-time status tracking throughout the stages of a proposal to product delivery. Validation and quality assurance are integrated for certification to meet the OEM standards. The value chain maintains digital continuity to deliver products with enhanced process efficiency and business profitability.

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For instance, an aircraft’s frame is composed of sheet metal parts comprising 4,700 rivets. With engineered to fly, the sheet metal is designed in 3D to position the rivet holes so the part assembly process is error-free and done right the first time. Also, each part is versioned and tracked for easy access to real-time product data as required to relevant stakeholders through digital continuity.

Digital continuity enables improvements in the holistic process for up to:

  • 30% error reduction
  • 40% productivity boost
  • 40% process changes requested

Benefits

  • Win more business: Significant cut down of the proposal response and turnaround time has helped in the business growth with improved bid quality for up to 25% without additional stakeholders.
  • Stay in control: Execution across multiple organizations through real-time KPIs with full traceability for stakeholders or OEM certifications.
  • Drive design & production efficiency: Digital continuity across all value streams from engineering to manufacturing to eliminate inefficiencies in the design process and ensure product quality.
  • Higher margins: 40% increased productivity with 30% reduce in change process requests and errors with strong controls, rules-based optimization and seamless collaboration

Co-Design to Target

Over 50% of projects miss out on their delivery data due to issues in the later stages that are discovered in the manufacturing process. Designing right the first time can prevent these issues in the first stage with the automated validation and quality assurance against the OEM standards.

Co-Design to Target enables OEMs with disparate tools and processes in a single stream to optimize the form, fit and function within an integrated Digital Mock-Up system (DMU). This system eliminates many integration issues that majorly affect  cost and schedule.

Digital Continuity allows driving projects with a real-time view of KPIs across the organization with multiple stakeholders, sites and suppliers to proactively sustain the project as per the timeline.

For instance, hundreds of engineers work on  detailed product development in the design phase. Thousands of specifications cascade to sub-systems and components based on top-level requirements. Project targets are met with lean development through efficient integration of engineering teams. With Co-Design to Target, these teams work with parallel timelines and collaborate in real-time for quick and easy detailed definitions of each component and system within the finished product.

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Benefits

  • Manage programs in real-time: Stakeholders can review the real-time status of projects with a quick view of all KPIs with full traceability until delivery. The works-in process is consolidated with various different tools for program controls, systems engineering, design engineering, contracts management, subcontract administrations, configuration management, and data management. Comprehensive management and real-time process visibility improve the success, profitability and value to customers.
  • Achieve manufacturing excellence by design: Design, engineering and manufacturing processes are efficiently integrated and validated with the digital mock-up function to evade costly issues in the later stages. This solution simplifies the product development process by integrating value streams. Transformation in the development phase significantly lowers the cost and time of projects with Co-Design to Target.
  • Reduce costs and improve quality: Program execution is enhanced with multi-discipline simulations to guarantee the delivery of performance, reliability and cost targets. Reducing the complexity in product development stage enables organizations to reap the profits at a lower recurring and non-recurring costs. Co-Design to Target industry-specific solution transforms the product development phase to ensure significant reduction in cost with improved quality.

To know more about our aerospace & defense industry-specific solutions, submit an inquiry to speak to our senior technical experts.

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