The paper describes the utility of a low cost, 1 m2 by 2m forced ventilation, micro-climate test chamber, for the support of research and teaching in mechatronics. Initially developed for the evaluation of a new ventilation rate controller, the fully instrumented chamber now provides numerous learning opportunities and individual projects for both undergraduate and postgraduate research students.
LeighP. A., ‘Modelling and control of micro-environmental systems’, PhD Thesis (Institute of Environmental and Natural Sciences, Lancaster University, 2002).
2.
VrankenE., ‘Analysis and optimisation of ventilation control in livestock buildings’, PhD Thesis (Katholieke Universiteit Leuven, 1999).
3.
HebnerA. J.BoonC. R.PeughG. H., ‘Air patterns and turbulence in an experimental livestock building’, Journal of Agricultural Engineering Research, 64 (1996), 209–226.
4.
KreiderJ. F.RablA., ‘Heating, ventilation and air conditioning control systems’, Heating and Cooling of Buildings. Design for Efficiency (McGraw-Hill, Singapore, 1996), pp. 605–667.
5.
YoungP. C., ‘Stochastic, dynamic modelling and signal processing: Time variable and state dependent parameter estimation’, in FitzgeraldW. J. (eds.), Nonlinear and Nonstationary Signal Processing (Cambridge University Press, Cambridge, 2000), pp. 74–114.
6.
YoungP. C.BehzadiM. A.WangC.L.ChotaiA., ‘Direct digital and adaptive control by input-output, state variable feedback pole assignment’, International Journal of Control, 46 (1987), 867–1881.
7.
TaylorC. J.ChotaiA.YoungP. C., ‘State space control system design based on non-minimal state-variable feedback: Further generalisation and unification results’, International Journal of Control, 73 (2000), 1329–1345.
8.
TaylorC. J.LeighP.PriceL.YoungP. C.BerckmansD.JanssensK.VrankenE.GeversR., ‘Proportional-Integral-Plus (PIP) control of ventilation rate in agricultural buildings’, Control Engineering Practice, 12 (2004), 225–233.