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Design & Delivery

Solution Design & Planning for Your IT Infrastructure

From target architecture to an actionable technical plan.

ForgeOne turns target architectures for Linux, Kubernetes, OpenShift, virtualization and hybrid infrastructures into concrete implementation plans. Together we define components, sizing, integrations, dependencies as well as rollout and migration paths so an architecture concept becomes a reliable basis for delivery.

ForgeOne creates technical solution designs and implementation plans for Linux, Kubernetes, OpenShift, virtualization and hybrid IT infrastructures.

When Does Architecture Become Concrete Planning?

Once the technical target state is defined, decisions must become concrete enough for an environment to be built reproducibly, migrated and operated reliably later.

A New Platform Is Being Built

A Linux, Kubernetes, OpenShift or virtualization platform needs to be implemented production-ready.

Existing Systems Are Being Migrated

Workloads or platforms need to move to new infrastructure, other data centers or new technologies.

Components Need Sizing

Compute, RAM, storage, networking and platform services must be aligned with requirements, growth and availability.

What Do We Plan in Detail?

ForgeOne plans components, sizing, integrations, automation as well as rollout and migration paths for IT platforms.

Proxmox, Ceph, Kubernetes, OpenShift

Components & Sizing

Selection and sizing of compute, storage, network and platform components based on workloads, availability and expected growth.

Keycloak, FreeIPA, LDAP, DNS, PKI

Platform & Integration

Technical integration of the platform into existing network, identity, DNS, PKI, monitoring and backup structures.

Ansible, AAP/AWX, OpenTofu, GitLab CI/CD, Argo CD

Automation & Deployment

Definition of reproducible provisioning paths for infrastructure, operating systems and platform services.

Staging, migration, cutover, rollback

Migration & Rollout

Planning of build-out, testing, data and workload migration, cutover, rollback and handover to operations.

From Target State to Actionable Design

  1. 01Step 1

    Clarify Requirements

    Translate capacity, availability, security, recovery and operational requirements into technical criteria.

  2. 02Step 2

    Define Components

    Define platforms, systems, versions, integrations and technical dependencies.

  3. 03Step 3

    Plan Implementation

    Prepare deployment, migration, testing, cutover and rollback in a structured way.

  4. Current step
    04Step 4

    Approve Delivery

    Document design, decisions and sequence so implementation and operations start from one shared basis.

VM or Container?

The platform model follows workload, operations team, deployment model and lifecycle.

Kubernetes or a Classic Platform?

We evaluate whether orchestration creates real value or unnecessary complexity.

Central or Distributed Storage?

Availability, performance, data volume and operating model shape the storage design.

Automation or Manual Processes?

Reproducibility matters, but automation depth must fit the operating model.

What Do You Receive?

The exact scope depends on the engagement. The goal is a documented basis that allows implementation and operations to start reliably.

Technical Solution Design

Documented systems, components, versions, integrations and dependencies.

Sizing & Capacity Planning

Sizing of compute, storage and relevant platform resources.

Rollout or Migration Plan

Defined sequence for build-out, tests, migration, cutover and rollback.

Implementation Basis

Documented decisions and technical requirements for implementation, automation and later operations.

Technical Insights

These resources explore planning topics around platforms, Linux, identity and migration.

Proxmox as a Platform

Basics for building a Proxmox environment as a virtualization building block.

SUSE or Red Hat

Context for Enterprise Linux decisions and long-term maintainability.

Keycloak and SSO

Example for central authentication with Keycloak and existing SSO.

Automation & IaC

How repeatable infrastructure becomes plannable through automation and Infrastructure as Code.

Frequently Asked Questions About Solution Design & Planning

What is a technical solution design?Show answer Action: Open answer

A technical solution design makes a target architecture concrete. It describes systems, components, sizing, integrations, dependencies and technical implementation.

What is the difference between architecture and solution design?Show answer Action: Open answer

Architecture defines the target state, principles and technical guardrails. Solution design defines exactly how that architecture is implemented through systems, components, integrations and deployment paths.

Does ForgeOne support sizing and capacity planning?Show answer Action: Open answer

Yes. Depending on scope, compute, storage, networking and platform resources can be sized based on workloads, availability and expected development.

Is automation considered during planning?Show answer Action: Open answer

Yes. Infrastructure as Code, Configuration as Code, GitOps and automated deployments are considered during solution design when they make sense for the environment.

Can ForgeOne implement the planned solution afterwards?Show answer Action: Open answer

Yes. Solution design can be followed by implementation, migration, automation, integration and operational services.

You have a target state and want to turn it into an actionable solution?

In a free initial consultation we clarify which technical decisions and planning steps are necessary for your environment.

Related solution clusters

Solution design connects target architecture, migration path and operations. The cluster pages show which platform areas are affected.

  • Virtualization & Storage
  • Backup & Disaster Recovery
  • Container & Platform Engineering
Virtualization & Storage

Next step

We identify the right cluster for your initiative together.

Book a free consultation