In the last two decades an intense shift from advanced mechatronic systems to Cyber-Physical Systems (CPS) is taking place.
CPS will play an important role in the field of precision agriculture and it is expected to improve productivity in order to feed the
world and prevent starvation. In order to expedite and accelerate the realization of CPS in the field of precision agriculture it is
necessary to develop methods, tools, hardware and software components based upon transdisciplinary approaches, along with
validation of the principles via prototypes and test beds. In this context this paper presents a precision agricultural management
integrated system architecture based on CPS design technology