Bio-inspired design process
Biology as a model and inventions
Nature has an enormous pool of inventions that passed the harsh test of practicality and durability in a changing environment. To harness the most from nature’s capabilities, it is critical to bridge between biology and engineering and see the cooperation of experts from both fields. This bridging effort can help turn nature’s capabilities into engineering capabilities, tools and mechanisms. To approach nature in engineering terms, it is necessary to sort biological capabilities along technological categories. Namely, one can take biologically identified characteristics and seek an analogy in terms of engineering, as shown in the table.
Table 2. Characteristic similarities of biology and engineering systems
| Characteristic similarities of biology and engineering systems | ||
| Biology | Engineering | Bioengineering, biomimetics, bionics and biomechanics |
| Body | System | System with multifunctional materials and structures are developed emulating the capability of biological systems |
| Skleton and bones | Structure and support struts | Support structures are part of every man-made system |
| Brain | Computer |
Advances in computers are being made emulating the operation of the human brain |
| Intelligence | Artificial intelligence | There are numerous aspects of artificial intelligence that have been inspired by biology including augmented reality, autonomous systems, computational intelligence, expert systems, fuzzy logic, etc. |
| Senses | Sensors | Computer vision, artificial vision, radar, and other proximity detectors all have direct biological analogies. However, at their best, the capability of the man-made sensors is nowhere near as good as biosensors |
| Muscles | Actuators |
Electroactive polymers are actuators with functional similarity to natural muscles |
| Electrochemical power generation | Rechargeable battries | The use of biological materials to produce power will offer mechanical systems enormous advantages. |