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Fault Detection and Diagnostics for Rooftop Air Conditioners

Fault Detection and Diagnostics for Rooftop Air Conditioners

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9<br />

IA<br />

= Independence Assumption<br />

λ<br />

i<br />

= Eigenvalue of Σ<br />

Λ<br />

= Eigenvalue matrix<br />

M<br />

= Mean vector of residuals<br />

ma = Mixed air<br />

M = Mean vector <strong>for</strong> normal operation<br />

normal<br />

M<br />

current = Mean vector <strong>for</strong> current operation<br />

MCS = Monte-Carlo Simulation<br />

m&<br />

r = Refrigerant mass flow rate<br />

µ = Mean<br />

µ<br />

normal = Mean value <strong>for</strong> normal operation<br />

M<br />

X = Mean vector <strong>for</strong> sample X<br />

M<br />

Y = Mean vector <strong>for</strong> sample Y<br />

N<br />

= Number of generated sample points<br />

N<br />

X = Normal distribution <strong>for</strong> sample X<br />

OCS = Operation costs savings<br />

Ω<br />

X = Area <strong>for</strong> probability evaluation<br />

P<br />

dis = Discharge pressure<br />

Φ<br />

= Eigenvector matrix<br />

P<br />

i<br />

= Data points<br />

P<br />

Ω<br />

= Probability within area Ω<br />

X<br />

φ<br />

ra = Relative humidity of return air<br />

P<br />

dis<br />

= Discharge pressure<br />

PMIS = Preventive maintenance service savings<br />

P<br />

suc = Suction pressure<br />

Q & cap<br />

= Cooling capacity<br />

Q &<br />

cap<br />

= Average cooling capacity<br />

&<br />

= Average cooling capacity at normal operation<br />

Q<br />

cap , Normal<br />

Q<br />

Load<br />

= Building cooling load<br />

ra<br />

= Return air<br />

ratio<br />

dist = Distance ratio<br />

RBF = Radial basis function<br />

RMS = Root mean square<br />

SPSDW = System per<strong>for</strong>mance & safety degradation window<br />

SRB = Statistical rule-based<br />

SSR = System state residual<br />

SSSS = Smart service schedule savings<br />

RTU = <strong>Rooftop</strong> unit

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