{"id":8049,"date":"2022-04-15T15:13:00","date_gmt":"2022-04-15T08:13:00","guid":{"rendered":"https:\/\/bestarion.com\/us\/?p=8049"},"modified":"2025-07-24T16:52:35","modified_gmt":"2025-07-24T09:52:35","slug":"devops-trends","status":"publish","type":"post","link":"https:\/\/bestarion.com\/us\/devops-trends\/","title":{"rendered":"Top 10 DevOps Trends to Watch 2024"},"content":{"rendered":"

\"devops-engineer\"<\/p>\n

When customer preferences are constantly evolving and changing constantly, only a few tech companies can guarantee satisfaction with their customers and exceed expectations for business success each time! Innovative business strategies aided by an exemplary implementation of<\/span> DevOps<\/span><\/a> can help these businesses get consistent and measurable outcomes as they design, launch, improve, and market new products.\u00a0<\/span><\/p>\n

DevOps solutions<\/b><\/a> help businesses automate the development and testing process by automating and standardizing code migration and deployment across a variety of environments. They allow developers to establish continuous feedback loops that allow them to decrease response time and deliver software continually based on client feedback and their usage habits. Also, they enable an easy deployment process that allows each code check-in to be integrated into production.\u00a0<\/span><\/p>\n

This article will assist you in discovering the most current<\/span> DevOps trends<\/b> that will increase technological innovation and digital transformation by 2024.<\/span><\/p>\n

The 10 Most Important DevOps Predictions For 2024<\/span><\/h2>\n

1. Container Adoption Leading DevOps Strategy<\/i><\/b><\/h3>\n

One of the main factors that contribute to the growth of <\/span>DevOps<\/b> is the increasing usage of <\/span>container technology<\/b>. Containers are self-contained, lightweight environments that make managing and hosting<\/span> web applications<\/span> simpler. They are designed to be quick, efficient, reliable, and stable.<\/span><\/p>\n

In 2023,<\/span> Gartner<\/span><\/a> estimates that 70% of enterprises have two or more containerized applications. The utilization of Kubernetes and container-native services for storage, networking, and security will continue to rise. Speed and agility will be essential as applications get more complicated. Containers are the most efficient method to create applications that can be scaled and quickly updated to include new features and resolve customer problems to gain a competitive edge.\u00a0<\/span><\/p>\n

As more apps are created, and modifications are made more quickly, DevOps will have to face delays in data. In the Cloud, customers are searching for platforms to help solve their problems.<\/span><\/p>\n

2. Serverless computing<\/strong><\/em><\/h3>\n

The idea of<\/span> serverless computing<\/b> is emerging as an exciting and new method of deploying software and other applications. Serverless computing helps streamline<\/span> DevOps<\/span><\/a> operations while improving the scalability of architecture and lowering costs. While automating<\/span> software development<\/span><\/a>, DevOps encompasses the entire software development process, from conception up to testing, deployment, and maintenance in one location. <\/span>Serverless computing<\/b> can help developers reduce their burden by handling server maintenance, including updates to the system and cloud monitoring.<\/span><\/p>\n

Bringing Dev and Ops teams together and removing their differences offers enormous benefits for DevOps. Developers don’t have to access infrastructure execution because they’re connected with cloud servers. Serverless computing produces codes to run DevOps pipelines without the need for hosting to build, test, and deploy. This simplifies deployments and decreases expenses by centralizing infrastructure and business strategy.<\/span><\/p>\n

3. Microservices Architecture<\/i><\/b><\/h3>\n

\"devops-trends\"<\/p>\n

Microservices architecture<\/b> is growing in popularity in the IT industry as a viable alternative to the traditional architectural model. Microservices architecture and practices of DevOps let teams decentralized to develop faster, keep control over their tech standardization and stack, monitor the performance metrics, oversee the release and development cycles, and ultimately cut down the time to market by speeding the process of development and release.<\/span><\/p>\n

Microservices are a great way to help cloud computing break powerful monolithic software into manageable, smaller units. This technique allows teams to get shorter release times for software. You can develop new products or modernize existing software faster using the latest microservices technology if you have a well-designed strategy with well-organized teams and solid DevOps procedures.<\/span><\/p>\n

4. The Rising of DevSecOps<\/i><\/b><\/h3>\n

Security<\/b> is an issue of great importance in the new digital world. Companies are continuously being forced to be more<\/span> agile<\/span><\/a>, and security teams have to work to stay on top of testing demands. That has resulted in the rise of <\/span>DevSecOps<\/b>. DevSecOps incorporates the best practices in the software development, delivery, and operations with a focus on observability and security; thus, the risks and vulnerabilities of the software are reduced. Security is not a last-minute thought, and it is a factor that is ingrained from the beginning.<\/span><\/p>\n

DevSecOps <\/b>assists in closing the gap in security knowledge in IT and business. It assists in the early detection of cyber threats and the cost reduction related to their resolution. The DevSecOps method ensures the safety and security of systems as per the current DevOps trends and the potential of the future.<\/span><\/p>\n

5. Low-code applications<\/i><\/b><\/h3>\n

Implementing a <\/span>low-code<\/b> method of DevOps can be a game-changer for any team. The speed and agility that low-code enables will provide any company with an advantage over competitors in today’s fast-paced, competitive software market. Low-code platforms let you create apps with no coding knowledge. It allows people who are not technical to help develop software through an intuitive interface that oversees the entire process of developing apps. It lets users create their processes and logic through the drag and drop of elements. This style of DevOps can speed up the whole process of development and deployment by enabling user-friendly and straightforward applications.<\/span><\/p>\n

Tools for programming that automate the deployment of applications can easily interface using a low-code platform. They also assist with the essential DevOps practices like building validation, version control, and quality assurance. The availability of a single platform that can provide all of these with “no” and “low” codes can assist DevOps teams to work more efficiently while reducing the overall complexity. Low code means less emphasis on coding, while DevOps is a way to collaborate effectively; the combination of both results in quicker implementation and development.<\/span><\/p>\n

6. Increased adoption of GitOps<\/i><\/b><\/h3>\n

GitOps<\/b>, a recent update in the DevOps workflow, is a method of managing and automating infrastructure. GitOps can be described as a Kubernetes-based system that lets developers and IT teams working on operations use Git for managing clusters and developing applications. Through the implementation of the Git workflow in the operations and development groups, programmers can utilize Git pull requests to control software and infrastructure deployment.<\/span><\/p>\n

To manage cloud-native and clustered applications using CI\/CD, GitOps uses traditional tools for development. It streamlines cloud-native app deployment maintenance, monitoring, and deployment with Git to serve as one point of truth.<\/span><\/p>\n

GitOps is among the methods to deploy as well as manage Kubernetes clusters. Through incremental updates, continuous delivery allows teams working on development to create tests, deploy, and build software much faster. Kubernetes’ continuous integration pipeline and runtime pipeline must be capable of writing and reading documents to Git and updating repository repositories for containers or loading the containers. Control of the version for configuration changes and living monitoring, alerting, and notifications are all feasible through GitOps and enable businesses to manage their infrastructure better.<\/span><\/p>\n

7. Increased need for infrastructure as code<\/i><\/b><\/h3>\n

Infrastructure as Code (IaC)<\/b> is a step over DevOps automation. Infrastructure as code streamlines provisioning and management of resources using code rather than using tools for configuration. As the complexity of environments increases, infrastructure management becomes increasingly complicated and prone to human errors. One of the significant advantages of the IaC method is that it permits the standardization of infrastructure and rapid implementation.<\/span><\/p>\n

This allows organizations to create solid, consistent systems easily replicated and used across testing, development, or production systems. DevOps teams can manage and provide all aspects of the environment, such as operating systems, VMs containers, application configuration storage, networking, and connections between components using an infrastructure-as-code.<\/span><\/p>\n

Infrastructure as Code (IaC) significant benefits include:<\/span><\/p>\n