
Permaculture Design Course
Learn to design productive, resilient land systems using proven permaculture principles. This course takes you from ecological foundations through complete site design, water harvesting, soil building, and food forest creation. Whether you're working a backyard or a broadscale farm, you'll finish with the skills and a real design you can implement.
What you will learn:
This course covers the full permaculture design process from ethics and principles to finished, implementable site plans. You will learn how to read landscapes, analyse soil and water, and apply zone and sector planning to any property. You will design water harvesting earthworks, build soil fertility without synthetic inputs, and create multi-layered food forest systems. The course also covers integrated whole-site design, animal systems, energy, and built structures. You will develop phased implementation plans and adaptive management routines to bring your design to life over time.
How you study in practice Permaculture Design Course
How you practise Permaculture Design Course
For companies looking to train their team
With Dedika for businesses, the course includes exercises and examples tailored to your own business and the specific needs of your company.
Course content
8 Chapters • 39 LessonsDuration between 4 and 360 hours (you decide)
Chapter 1HideHide detailsSee detailsFoundations of Permaculture Ethics and Principles
Foundations of Permaculture Ethics and Principles
Lesson 1 • Origins and Philosophy of Permaculture
Traces permaculture's historical roots and philosophical basis. Provides context for why ethics precede technique in all permaculture design work.
Lesson 2 • The Three Core Ethics
Examines Earth Care, People Care, and Fair Share as the ethical foundation. Connects each ethic to practical decision-making in design projects.
Lesson 3 • Applying Principles to Observation
Translates abstract principles into structured site observation habits. Builds the observational discipline required for all subsequent design work.
Lesson 4 • Permaculture Design Principles Overview
Introduces the twelve design principles as actionable guidelines. Students learn to recognise each principle in natural and human-made systems.
Chapter 2HideHide detailsSee detailsUnderstanding Natural Systems and Ecology
Understanding Natural Systems and Ecology
Lesson 1 • Soil Ecology and Health
Examines soil as a living system central to permaculture productivity. Connects soil biology to plant health, water retention, and carbon storage.
Lesson 2 • Ecological Succession and Stability
Explains pioneer to climax succession stages and disturbance ecology. Students learn to work with succession rather than reset it repeatedly.
Lesson 3 • Climate Patterns and Microclimates
Distinguishes regional climate from site-level microclimates. Students learn to read and modify microclimates to expand design possibilities.
Lesson 4 • Ecosystem Structure and Function
Covers producers, consumers, decomposers, and energy flow. Establishes ecological vocabulary used throughout all design chapters.
Lesson 5 • Water Cycles and Hydrology
Analyses the water cycle from precipitation to groundwater recharge. Provides the hydrological foundation for water harvesting design in later chapters.
Chapter 3HideHide detailsSee detailsSite Analysis and Assessment
Site Analysis and Assessment
Lesson 1 • Mapping Tools and Techniques
Introduces base maps, topographic maps, and digital mapping tools. Accurate mapping is the prerequisite for all spatial design work.
Lesson 2 • Slope, Aspect, and Topography
Analyses how slope gradient and aspect affect water movement, temperature, and plant selection. These factors directly shape earthwork and planting decisions.
Lesson 3 • Sector Analysis
Identifies external energies entering a site, including sun, wind, water, and fire. Sector mapping directs placement of elements to intercept or deflect these forces.
Lesson 4 • Zone Planning Framework
Organises site elements by frequency of human use and management intensity. Zone planning reduces labour and maximises efficiency in any design.
Lesson 5 • Soil and Water Site Assessment
Applies field tests to characterise soil type, drainage, and water availability. Findings feed directly into water harvesting and soil improvement strategies.
Chapter 4HideHide detailsSee detailsWater Harvesting and Management
Water Harvesting and Management
Lesson 1 • Ponds, Dams, and Storage Systems
Designs surface water storage from small garden ponds to larger dams. Addresses siting, spillway design, and ecological integration.
Lesson 2 • Drought Resilience Strategies
Integrates mulching, soil organic matter, and plant selection to reduce water demand. Builds long-term resilience into the water management system.
Lesson 3 • Earthworks for Water Management
Covers swales, berms, terraces, and keyline design as earthwork strategies. Each technique is matched to specific slope conditions and rainfall patterns.
Lesson 4 • Rainwater Harvesting and Greywater
Covers roof catchment systems, tank sizing, and greywater reuse. Connects household water management to broader site water cycles.
Lesson 5 • Principles of Water Harvesting Design
Establishes the hierarchy: slow, spread, sink before storing in tanks. Applies hydrological knowledge from Chapter 2 to practical design logic.
Chapter 5HideHide detailsSee detailsSoil Building and Fertility Management
Soil Building and Fertility Management
Lesson 1 • Composting Systems and Methods
Compares hot composting, cold composting, and vermicomposting for different scales. Students select and design the appropriate system for their site context.
Lesson 2 • Biological Fertility and Soil Food Web
Leverages mycorrhizal fungi, bacteria, and soil fauna as fertility partners. Students design practices that feed the soil food web rather than bypass it.
Lesson 3 • Cover Crops and Green Manures
Uses cover crops to fix nitrogen, suppress weeds, and build organic matter. Integrates cover cropping into seasonal rotation and food production systems.
Lesson 4 • Sheet Mulching and No-Dig Methods
Applies sheet mulching to convert compacted or weedy ground into productive beds. Demonstrates how no-dig methods protect soil structure and biology.
Lesson 5 • Mulching Strategies and Materials
Examines wood chip, straw, leaf, and living mulches for soil protection. Connects mulch selection to soil biology, moisture retention, and weed suppression.
Chapter 6HideHide detailsSee detailsFood Forest and Polyculture Design
Food Forest and Polyculture Design
Lesson 1 • Forest Garden Layers and Structure
Defines the seven layers of a food forest from canopy to root zone. Layer understanding is the structural basis for all polyculture planting design.
Lesson 2 • Guild Design and Plant Relationships
Assembles plant guilds that provide mutual support through nutrient cycling and pest management. Guild design reduces maintenance while increasing system productivity.
Lesson 3 • Species Selection for Polycultures
Matches species to site conditions, climate, and human needs using functional analysis. Students build a species palette appropriate to their design context.
Lesson 4 • Succession Planning in Food Forests
Plans the temporal sequence from pioneer planting to mature food forest. Succession planning ensures productivity at every stage of system development.
Lesson 5 • Annual Polycultures and Market Gardens
Integrates annual vegetables into polyculture systems using companion planting and rotation. Bridges food forest design with intensive annual food production.
Chapter 7HideHide detailsSee detailsIntegrated Systems and Whole-Site Design
Integrated Systems and Whole-Site Design
Lesson 1 • Producing the Integrated Design Document
Assembles all analysis and design decisions into a professional design report. Students practise presenting designs clearly for clients, communities, or grant applications.
Lesson 2 • Structures and Built Environment
Sites and designs buildings, greenhouses, and infrastructure as permaculture elements. Passive solar design and material choices are evaluated through a permaculture lens.
Lesson 3 • Integrating Animals into the Design
Positions livestock and poultry as functional system components rather than separate enterprises. Animal integration closes nutrient loops and reduces external inputs.
Lesson 4 • Energy Systems in Permaculture Design
Evaluates renewable energy options and energy efficiency as design elements. Energy systems are integrated with water, food, and shelter for whole-site coherence.
Lesson 5 • Designing with Connections and Relationships
Applies the principle that each element serves multiple functions and each function is supported by multiple elements. Connections between elements define system resilience.
Chapter 8HideHide detailsSee detailsImplementation, Management, and Evaluation
Implementation, Management, and Evaluation
Lesson 1 • Phased Implementation Planning
Sequences design elements by priority, resource availability, and ecological readiness. Phasing prevents overwhelm and ensures early yields support later investment.
Lesson 2 • Observation, Monitoring, and Feedback
Establishes ongoing observation routines to track system health and productivity. Monitoring data feeds back into design adjustments and adaptive management.
Lesson 3 • Practical Skills for Site Establishment
Covers hands-on skills for earthwork, planting, and infrastructure installation. Bridges design theory with the physical work of site establishment.
Lesson 4 • Adaptive Management Strategies
Applies adaptive management principles to respond to unexpected outcomes and changing conditions. Students practise iterative design thinking as a professional habit.
Lesson 5 • Long-Term Site Stewardship
Addresses the transition from active establishment to mature system stewardship. Covers minimal-intervention management as systems become self-regulating.
Your valid completion certificate
This course is for you:
Homesteaders: wanting to turn raw land into a productive, self-sustaining property.
Landscape architects: seeking ecological design methods beyond conventional horticulture training.
Hobby gardeners: ready to move from raised beds toward whole-property food systems.
Environmental educators: looking to ground sustainability teaching in hands-on design practice.
Career changers: drawn to regenerative agriculture after leaving conventional professional roles.
Small-scale farmers: struggling with soil degradation and high input costs on working land.
What our students say
Your classes are perfect. I purchased the one-year package and finally have the opportunity to follow various topics of my interest without needing to change platforms... I thank you for everything you do, I've already recommended you to other people...

I like how the lessons are straight to the point and how I can change chapters and skip content I don't need.

I like the content and the way videos are presented and transcribed, which speeds up the process!

The platform is fast, simple to use. The diversity of content and complementary videos help a lot with learning.

Top trainings
FAQ
Who is Dedika?
Is the certificate valid in Nigeria?
Are the courses free?
What is the course workload?
What are the courses like?
How do the courses work?
What is the duration of the courses?
What is the cost or price of the courses?
What is an EAD or online course and how does it work?
PDF Course




















