Design of an Automatic Control Algorithm for Energy-Efficient ...
Design of an Automatic Control Algorithm for Energy-Efficient ...
Design of an Automatic Control Algorithm for Energy-Efficient ...
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Simulation parameters 146<br />
Symbol Parameter Value Used in objective<br />
���� Maximum weight 255 All<br />
�������� Lowest carbon dioxide concentra-<br />
tion<br />
�������� Highest carbon dioxide concentra-<br />
tion (��� � ����)<br />
��������<br />
3600 ���� �<br />
�����<br />
Air quality<br />
Air quality<br />
���� Maximum energy consumption 200 � Power consumption (el.)<br />
���� Maximum fogging “dist<strong>an</strong>ce” 5 � Fogging affinity<br />
����� Pressure scaling factor 83 ��<br />
�<br />
Fogging affinity<br />
�������� Maximum humidity user bias 30%rH Humidity com<strong>for</strong>t<br />
���� Maximum com<strong>for</strong>table humidity 70%rH Humidity com<strong>for</strong>t<br />
���� Minimum com<strong>for</strong>table humidity 30%rH Humidity com<strong>for</strong>t<br />
�������� Maximum <strong>for</strong> the user adjustable<br />
metabolism<br />
�������� Minimum <strong>for</strong> the user adjustable<br />
�������<br />
�������<br />
metabolism<br />
Minimum temperature <strong>for</strong> the clo-<br />
thing adaption<br />
Maximum temperature <strong>for</strong> the clo-<br />
thing adaption<br />
2.25 ��� Thermal com<strong>for</strong>t<br />
0.75 ��� Thermal com<strong>for</strong>t<br />
-5.0 ℃ Thermal com<strong>for</strong>t<br />
25.0 ℃ Thermal com<strong>for</strong>t<br />
������� Minimum clothing insulation 0.3 ��� Thermal com<strong>for</strong>t<br />
������� Maximum clothing insulation 1.5 ��� Thermal com<strong>for</strong>t<br />
�������<br />
��������<br />
Lower limit <strong>for</strong> the cold air preven-<br />
tion<br />
Upper limit <strong>for</strong> the cold air preven-<br />
tion<br />
� ℃ Cold air prevention limit<br />
�� ℃ Cold air prevention limit