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A Cilia-inspired Closed-loop Sensor-actuator Array (2018)
Journal Article
Whiting, J., Mayne, R., Melhuish, C., & Adamatzky, A. (2018). A Cilia-inspired Closed-loop Sensor-actuator Array. Journal of Bionic Engineering, 15(3), 526-532. https://doi.org/10.1007/s42235-018-0043-7

© 2018, Jilin University. Cilia are finger-like cell-surface organelles that are used by certain varieties of aquatic unicellular organisms for motility, sensing and object manipulation. Initiated by internal generators and external mechanical and ch... Read More about A Cilia-inspired Closed-loop Sensor-actuator Array.

Emergent behaviors in a bio-inspired platform controlled by a physical cellular automata cluster (2016)
Journal Article
Assaf, T., Mayne, R., Adamatzky, A., & Melhuish, C. (2016). Emergent behaviors in a bio-inspired platform controlled by a physical cellular automata cluster. Biomimetics, 1(1), 5. https://doi.org/10.3390/biomimetics1010005

This work illustrates behavior patterns and trajectories of a bio-inspired artificial platform induced by a cellular automata (CA)-based control strategy. The platform embeds both CA control as physical electronic architecture and a distributed hardw... Read More about Emergent behaviors in a bio-inspired platform controlled by a physical cellular automata cluster.

Metachronal waves in cellular automata: Cilia-like manipulation in actuator arrays (2013)
Presentation / Conference
Georgilas, I., Adamatzky, A., Barr, D., Dudek, P., & Melhuish, C. (2013, September). Metachronal waves in cellular automata: Cilia-like manipulation in actuator arrays. Paper presented at VI International Workshop on Nature Inspired Cooperative Strategies for Optimization (NICSO 2013), Canterbury, UK

Paramecium is covered by cilia. It uses the cilia to swim and transport food particles to its mouth. The cilia are synchronised into a collective action by propagating membrane potential and mechan- ical properties of their underlying membrane and th... Read More about Metachronal waves in cellular automata: Cilia-like manipulation in actuator arrays.

UAV horizon tracking using memristors and cellular automata visual processing (2013)
Presentation / Conference
Georgilas, I., Gale, E., Adamatzky, A., & Melhuish, C. (2013, August). UAV horizon tracking using memristors and cellular automata visual processing. Paper presented at TAROS 2013, The 14th Conference Towards Autonomous Robotic Systems, St Anne's College, Oxford, UK

Unmanned Aerial Vehicles (UAV)s can control their altitude and orientation using the horizon as a reference. Typically this task is performed via edge-detection vision processing techniques implemented in a computer or digital electronics. We demonst... Read More about UAV horizon tracking using memristors and cellular automata visual processing.

Manipulating with excitations: Waves or gliders? (2013)
Presentation / Conference
Georgilas, I., Adamatzky, A., & Melhuish, C. (2013, May). Manipulating with excitations: Waves or gliders?. Paper presented at ICRA 2013 Workshop - Unconventional Approaches to Robotics, Automation and Control, Inspired by Nature (UARACIN), Karlsruhe, Germany

Excitable media are classical examples of un- conventional computing devices. Using waves to represent information and wave interactions to represent information processing, excitable media achieve computation versatility comparable to traditional te... Read More about Manipulating with excitations: Waves or gliders?.

Manipulating objects with gliders in cellular automata (2012)
Presentation / Conference
Georgilas, I., Adamatzky, A., & Melhuish, C. (2012, August). Manipulating objects with gliders in cellular automata. Paper presented at Automation Science and Engineering (CASE), 2012 IEEE International Conference on, Seoul, Korea

Micro-scale manipulation of objects is a growing requirement in specialised industries, especially those related to assembly of fragile micro-components. Widely implemented techniques in robotics and automation do not always cope with the delicate na... Read More about Manipulating objects with gliders in cellular automata.

Towards an intelligent distributed conveyor (2012)
Journal Article
Georgilas, I., Adamatzky, A., & Melhuish, C. (2012). Towards an intelligent distributed conveyor. Lecture Notes in Artificial Intelligence, 7429, 457-458

Manipulation, orientation and handling of components, subparts and finished products is an essential element of any industrial process, which attracts substantial portion of resources and infrastructure. A classic manipulation, e.g. robot arms, is no... Read More about Towards an intelligent distributed conveyor.

Experimental implementation of mobile robot taxis with onboard Belousov-Zhabotinsky chemical medium (2004)
Journal Article
Ratcliffe, N., Adamatzky, A., Costello, B. D. L., & Melhuish, C. (2004). Experimental implementation of mobile robot taxis with onboard Belousov-Zhabotinsky chemical medium. Materials Science and Engineering: C, 24(4), 541-548. https://doi.org/10.1016/j.msec.2004.02.002

We discuss the first-ever experimental realization of the onboard excitable chemical controller for stimulus-guided navigation of mobile robots. We demonstrate that the Belousov-Zhabotinsky (BZ) reaction in the form of an onboard thin layer chemical... Read More about Experimental implementation of mobile robot taxis with onboard Belousov-Zhabotinsky chemical medium.

Experimental reaction-diffusion chemical processors for robot path planning (2003)
Journal Article
Adamatzky, A., de Lacy Costello, B., Ratcliffe, N. M., & Melhuish, C. (2003). Experimental reaction-diffusion chemical processors for robot path planning. Journal of Intelligent and Robotic Systems, 37(3), 233-249. https://doi.org/10.1023/A%3A1025414424756

In this paper we discuss the experimental implementation of a chemical reaction-diffusion processor for robot motion planning in terms of finding the shortest collision-free path for a robot moving in an arena with obstacles. These reaction-diffusion... Read More about Experimental reaction-diffusion chemical processors for robot path planning.

TCS learning classifier system controller on a real robot (2002)
Journal Article
Hurst, J., Bull, L., & Melhuish, C. (2002). TCS learning classifier system controller on a real robot. Lecture Notes in Artificial Intelligence, 2439, 588-597. https://doi.org/10.1007/3-540-45712-7_57

To date there have been few implementation of Holland’s Learning Classifier System (LCS) on real robots. The paper introduces a Temporal Classifier System (TCS), an LCS derived from Wilson’s ZCS. Traditional LCS have the ability to generalise over th... Read More about TCS learning classifier system controller on a real robot.

ZCS and TCS learning classifier system controllers on real robots (2002)
Journal Article
Hurst, J., Bull, L., & Melhuish, C. (2002). ZCS and TCS learning classifier system controllers on real robots

To date there has only been one implementation of Holland's Learning Classifier System (LCS) on real robots. In this paper the use of Wilson's ZCS system is described for an obstacle avoidance task. Although the task is simple it does present some ad... Read More about ZCS and TCS learning classifier system controllers on real robots.