Nexxverse

Urban Solution

NexxVerse Urban Solutions

NexxVerse brings unique and significant value to Business Improvement Districts, Chambers of Commerce, and other local advocates through its unique combination of software, 3D modeling and IoT resources.

NexxVerse integrates multiple Google Maps APIs into its cutting-edge 3D modeling solutions, now enhanced with Google Places capabilities to deliver dynamic, live information. These tools are designed to provide unparalleled insights into urban environments, creating a versatile and data-rich experience for users. Here’s an overview:

CC3D Fusion and Google Reality Mesh

NexxVerse’s Fusion Buildings seamlessly synchronize with Reality Mesh datasets, combining detailed photorealistic visuals with precise, data-driven overlays. This allows for maximum clarity in visualizations and enhanced decision-making capabilities.

Google Places API Integration

NexxVerse integrates Google Places to deliver live information on locations such as businesses, landmarks, and essential services. This integration supports:
1. Filtered Search Layers: Users can apply filters to search for specific categories and display only relevant data layers.
2. Dynamic Updates: Google Places ensures information is always current, enhancing the value and usability of 3D models in rapidly changing urban environments.

Google Street View API

Embeds immersive, street-level panoramas directly into 3D environments, allowing for context-rich exploration of urban areas.

Google Air Quality API

Incorporates real-time environmental data, offering insights into air quality metrics across cityscapes.

Google Map View API

Provides a simplified 2D view, enabling better navigation and visualization for planners and stakeholders.

Google Voyage API

Facilitates interactive storytelling and data exploration within urban digital twins, combining visuals with actionable data.

Nextspace Digital Twin Platform

Acting as the central hub, the Nextspace Platform organizes and visualizes data from these APIs alongside 3D models. It provides tools for managing urban data dynamically, integrating live updates from Google Places and curated datasets into a single, interactive platform.

This combination of live data from Google Places, synchronized 3D modeling, and robust APIs allows for comprehensive urban analysis, real-time insights, and informed decision-making tailored to the needs of cities, planners, and businesses.

Watch our latest Demo Video!

Case Study: Downtown Miami Development Authority

The Miami Downtown Development Authority (Miami DDA) leveraged CyberCity 3D mapping technology to revolutionize urban planning and development and achieve key program goals:
1. Visualize Development Progress
2. Enhance Public Engagement
3. Promote Miami Relocation
4. Enable Data-Driven Decisions
5. Integrate Web Content

By implementing CyberCity 3D mapping technology, the Miami DDA achieved several benefits:
1. Improved Communication
2. Increased Transparency
3. Strategic Decision Making
4. Economic Growth

The Miami Downtown Development Authority's successful implementation demonstrates the power of 3D mapping to transform urban planning and promote economic growth.

What CyberCity3D Can Do for Your BID

Integration of CyberCity 3D buildings and cloud maps with Google Maps APIs enhance BID planning and visualization, improving infrastructure and aesthetic decisions. They aid in navigation, boosting foot traffic by helping visitors find businesses and amenities. Location-based data offers insights into visitor patterns, optimizing resource allocation and public amenity installations. Interactive 3D maps provided by CyberCity 3D and Nextspace support marketing, attract tourists, and engage the community for feedback on projects. Efficient resource management ensures cleaner, safer environments. Overall, these tools drive economic vitality and growth by enhancing planning, navigation, data analysis, marketing, and community involvement.

Industies

VR in Oil and Gas Industry: Key Trends and Use Cases

The oil and gas industry stands apart from others because of a large number of factors. Safety risks, politics, industry regulations, changing markets — all of these influences present challenges for oil and gas businesses.

It’s not surprising that this industry has turned to modern technologies that emphasize efficiency, relying on highly skilled and trained individuals working within well-developed software ecosystems that ease the burden of routine tasks and bring about better results.

Companies in the oil and gas field often implement Virtual Reality. In this article, we will examine key trends in the use of VR, use cases for applying immersive technologies, and a success story about how HQSoftware partnered with an oil and gas company.

Virtual Reality in the Oil and Gas Industry: Key Trends

According to Technavio’s report, the need for advanced technologies is a key driver for the oil and gas industry.
And one of the most important technologies is VR, which is deployed in a variety of important tasks in these three main categories:
  • Staff training in virtual environments;
  • Building digital versions of real-world objects and scenarios for tests, experiments, and other purposes;
  • Improving understanding of safety procedures and enhancing response to emergencies.

According to research by GlobalData, the leading adopters of VR in the oil and gas industry are giants such as BP, Chevron, Shell, and Saudi Aramco. These companies are using VR for all operations, at the upstream, midstream, and downstream levels.

For example, these companies are investing in virtual subsurface mapping of prospective exploration sites. This helps in prior observation of the terrain before drilling. We will discuss even more use cases later.

It’s clear major petroleum companies and others in the oil and gas industry are using Virtual Reality solutions extensively to solve day-to-day problems and global tasks.

VR Use Cases in Oil and Gas

Let’s look at some of the many benefits of VR for the industry in a variety of iuse cases. Digital Twins VR can lend a hand to IoT solutions, a partnership that can be used to create more advanced systems. For example, companies put sensors and gadgets on plant equipment and other infrastructure objects to gather as much data as possible. This increases operations visibility and aids in decision-making. All this data is then compiled to build a Digital Twin of a plant and all the equipment inside it —- a digital copy that offers a thorough simulation of a plant’s operations.

Digital Twins can provide a ton of benefits:

  • Employees can train in a virtual environment using all the equipment they need without fear of hitting the wrong button;
  • All plant operations can be replicated inside a virtual environment to identify problems and overcome them in reality;
  • An equipment engineer can observe a malfunctioning piece remotely,  via a VR simulation using a Digital Twin, and then give advice on how to fix it;
  • Equipment and plant architecture can be developed in a Digital Twin before building the real thing, to test their viability and identify opportunities for improvement.

VR is capable of replicating a wide range of plant and equipment situations and details, helping oil and gas businesses foresee emergencies, build and test virtual models, and even educate employees.

Product design and manufacturing

VR is a great tool for product development as well. It allows for using 3D rendering to simulate digital designs and offers the opportunity to test the results long before the manufacturing stage starts.
VR can even be integrated with 3D printing to develop prototypes right away.
When a company is developing critical oil and gas equipment, VR reduces turnaround time by accelerating the process of product design. It reduces resource consumption by eliminating the need to manufacture a series of prototypes for testing.

Immersive Training

It’s typically expensive and risky to train oil and gas industry service personnel. Proper professional training is a must, and as the technology moves on, industry requirements change, new equipment comes online with new operating methods, and workers need to upgrade their skills or even learn completely new ones.

Training in Virtual Reality brings the following benefits, especially in the oil and gas industry:

  • Cost-effectiveness. With VR, there is no need to use and wear out expensive equipment, or bring high-wage coaches or busy experienced employees to farflung sites for training. All training is done inside a simulation, with educational content that can be reused and updated over time.
  • Safety. A well-thought-out VR training application can fully recreate a real working environment without all the hazards associated with the job on a petroleum plant or an oil rig. Using VR, trainees can learn new skills with no risk to themselves or the equipment.
  • Efficiency. VR provides trainees with the ability to learn by doing — they can practice new skills in a virtual environment so that this knowledge is better retained and can be applied in real life with less hesitation.
  • Engagement. With an education in VR, trainees are put through a set scenario where they obtain new skills. The solution can provide tips, hints, and instructions on the go and in an interactive manner. Gamification features can be added as well! All of this helps to boost engagement in a way no educational video or textbook can do.
  • Assessment. It is much easier to assess training results in VR than in real life. The Virtual Reality solution can record every move of the trainee, track and analyze it automatically — and there is no need to involve dedicated personnel in this process.
  • Customizability. If required, a separate VR environment and training scenario can be created for any skill, as VR capabilities are limited only by one’s imagination. Also, VR training requires no interruption of work processes, so custom training can be done on-demand and even for one person alone.

Along with all these benefits, VR training offers many potential scenarios for oil and gas companies. To name a few:

  • Gas leak emergency response,
  • Facility locating,
  • Patrolling transmission pipelines, etc.

With the ability to recreate any scenario for training in a virtual environment and all the benefits of using VR, it is clear why businesses are choosing VR training over traditional education methods.

Disaster management

In the oil and gas industry, employees are often exposed to dangerous working conditions, where they are susceptible to harm from hazardous chemicals and gases. These conditions can lead to disasters that your workers will have to manage somehow, or at least be able to react to properly to save their lives.

With VR, all possible dangers can be recreated inside a simulation. Which means all employees can be trained to respond to dangers without actual risk to their health.

For example, it is possible to develop VR solutions for:

  • Evacuation simulation;
  • Training in highly toxic environment situations;
  • Disaster response training.

3 Examples of Companies That Adopted Immersive Technologies

Along with Virtual Reality, some oil and gas companies use Augmented Reality. Both can be described as immersive technologies. Here are some examples of how they are successfully applying immersive tech:

This solution, designed mostly for plant operators and engineers, simulates a set of real-life scenarios:

  • Emergency shutdowns;
  • Abnormal operations;
  • Disaster response, etc.

Royal Dutch Shell

Shell uses Virtual Reality to build simulations for deepwater safety training. Shell’s workforce at the Malikai platform in Malaysia uses custom VR training solutions that incorporate a detailed 3D simulation of the Malikai platform.

In this simulation, workers learn operational safety procedures:

  • How to deal with potential hazards
  • What happens when an unsafe action is performed
  • The steps to responding to unforeseen events

VR allows trainees to practice vital skills in a safe environment.

Baker Hughes


A General Electric oil and gas business, Baker Hughes is using smart AR helmets in the field.

The helmet is essentially a safety gadget that can display video streams, equipment schemes, and photos to a field worker. It has wireless headphones, a camera, and a microphone attached to the helmet, so that engineers can provide expert guidance and assistance remotely.

At HQSoftware, developers work with immersive technologies, applying their know-how to help companies solve business issues and introduce new, more efficient tools.

Here is one of our success stories.

Our Success Story: AR for Oil and Gas

AR has been used extensively in the oil and gas sector, and we at HQSoftware have found a perfect way to apply this technology for 3D visualization.

AR Model of an FPSO Vessel

The customer is a company engaged in developing oil, gas, and renewables, and is the largest operator in Norway, providing power to more than 1 million homes.

The company was about to develop a new oil field in the Barents Sea, but the recent dramatic fall in oil prices interrupted the plan. The usual approaches to building production infrastructure and vessels were no longer viable, so the customer had to come up with a new design concept.

As a result, the company developed an advanced version of a floating production storage and offloading unit (FPSO).

To find a way to attract new investors, the company contacted HQSoftware to create a highly detailed 3D model of a vessel.

Partnering with HQSoftware, the customer delivered an AR mobile application that allows for viewing a 3D model of its new FPSO vessel. This eliminates the need to build a real prototype while providing investors with a detailed, interactive model of a new vessel.

Frequently Asked Questions

Augmented Reality in the oil and gas industry is an advanced visualization technology used for creating 3D and other graphic content, for overlaying over real-world images.

AR solutions are mostly developed for mobile devices and tablets. See our article on AR for the oil and gas project for reference.


VR is extensively used for various purposes to solve issues facing the oil and gas industry. The most common use cases of VR are:

Disaster management
Digital Twins
Product design and manufacturing

Major factors contributing to the development costs of VR solutions are:

The type of solution;
The development team’s composition and rates;
VR solution features;
Content.

When discussing a process as complex as Virtual Reality solution development, without firm details it’s hard to estimate how much it will cost to develop an app. But we are ready to help — send us your project requirements and we will provide you with a free individual estimate right away.

Industies