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book article
Advanced methodology for estimation of value of lost load (VOLL) using equipment specific health indices
Manninen, Henri
;
Kilter, Jako
;
Landsberg, Mart
2019 Electric Power Quality and Supply Reliability Conference (PQ) & 2019 Symposium on Electrical Engineering and Mechatronics (SEEM), Kärdla, Estonia, June 12-15, 2019 : proceedings
2019
/
6 p
https://doi.org/10.1109/PQ.2019.8818245
book article
Seotud publikatsioonid
1
Data-driven asset management and condition assessment methodology for transmission overhead lines = Ülekandevõrgu õhuliinide andmepõhine varahalduse ja seisundi hindamise metoodika
2
journal article EST
/
journal article ENG
A holistic risk-based maintenance methodology for transmission overhead lines using tower specific health indices and value of loss load
Manninen, Henri
;
Kilter, Jako
;
Landsberg, Mart
International journal of electrical power and energy systems
2022
/
art. 107767 ; 11 p. : ill
https://doi.org/10.1016/j.ijepes.2021.107767
Journal metrics at Scopus
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Article at WOS
journal article EST
/
journal article ENG
Seotud publikatsioonid
1
Data-driven asset management and condition assessment methodology for transmission overhead lines = Ülekandevõrgu õhuliinide andmepõhine varahalduse ja seisundi hindamise metoodika
Number of records 2, displaying
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173
1.
value of lost load
2.
added value
3.
advertising value
4.
areas of cultural and environmental value
5.
assessment of calorific value and moisture content
6.
boundary value problem
7.
boundary value problems
8.
call-by-push value
9.
call-by-value
10.
calorific value
11.
charter value
12.
cocreated brand value
13.
conditional value at risk (CVaR)
14.
consumer digital cocreated value
15.
Consumer-perceived value (CPV)
16.
course-of-value function
17.
cultural value
18.
customer engagement value
19.
customer value
20.
design value
21.
Ducoffe’s advertisement value model
22.
European added value
23.
E-value
24.
extreme value distribution
25.
extreme value distributions
26.
extreme value statistics
27.
generalised extreme value distribution
28.
global value chain
29.
global value chains (GVC)
30.
gross calorific value
31.
heating value
32.
information value
33.
Islamic public value
34.
market value added
35.
milieu value
36.
moisture buffer value
37.
net present value
38.
Net Present Value (NPV)
39.
non-market value
40.
non-use value
41.
oil shale value chain
42.
open value network
43.
perceived customer value theory
44.
perceived value of an innovation
45.
portrait value questionnaire
46.
price and value of housing
47.
public value
48.
public value sphere
49.
recreation value
50.
sampled measure value
51.
service value
52.
services value chain collaboration
53.
shareholder value
54.
smart service value (SSV)
55.
social value
56.
zero value
57.
target value design
58.
the co-creation of value
59.
theory of value
60.
Utilitarian/hedonic/social value
61.
value
62.
value activity cycle
63.
value added
64.
value adding REE chain
65.
value alignment
66.
value as a commons
67.
value at risk
68.
value centric design
69.
value chain
70.
value cocreation
71.
value co-creation
72.
value creation
73.
value dissipation
74.
value distribution
75.
value network analysis
76.
value of ecosystem services
77.
value of learning
78.
value propositions
79.
value settings
80.
value steam mapping
81.
value stream mapping
82.
value system
83.
value systems
84.
value theory
85.
value-added activities (VA)
86.
value-added bioproducts
87.
value-added intellectual coefficient
88.
value-added tax
89.
value-centric business
90.
value-centric design
91.
value-centric model
92.
value-in-experience
93.
value-system
94.
commercial load
95.
constant power load
96.
consumer load
97.
consumer load patterns
98.
cooling load
99.
cooling load reduction
100.
DHW heating load in educational buildings
101.
DHW heating load in public buildings
102.
dynamic load model
103.
economic load dispatch (ELD)
104.
electric load
105.
electric load flow
106.
electrical and heat load
107.
electrical load characteristics
108.
EV load model
109.
exponential load model
110.
grid load
111.
heating load
112.
hygrothermal load
113.
ice load
114.
indentor load
115.
indoor hygrothermal load
116.
light-load efficiency
117.
load
118.
load balancing
119.
load control
120.
load cycling
121.
load disaggregation
122.
load distribution
123.
load flexibility
124.
load following
125.
load forecast
126.
load forecasting
127.
load frequency control
128.
load frequency control (LFC)
129.
load leveling
130.
load limit states
131.
load management
132.
load matching
133.
load modeling
134.
load modelling
135.
load monitoring
136.
load pattern
137.
load prediction
138.
load scheduling
139.
load shifting
140.
load test
141.
load testing
142.
load transients
143.
load variance
144.
load-bearing analysis
145.
load-bearing capacity
146.
load-independent voltage output
147.
moisture load
148.
Non-intrusive load monitoring
149.
non-intrusive load monitoring (NILM)
150.
nonlinear load
151.
nutrient load
152.
nutrient load estimation
153.
on-load tap changer
154.
on-load tap changer (OLTC)
155.
peak load shifting
156.
pile load–displacement
157.
Point Load Test index
158.
pollution load
159.
pulsed power load (PPL)
160.
random variable load (RVL)
161.
residential load
162.
shear load
163.
short-term load forecast
164.
short-term load forecasting
165.
static load models
166.
static load test
167.
sudden load change
168.
thermal load
169.
Thermostatic load
170.
thermostatically controlled load
171.
unbalanced load
172.
undesirable load
173.
wind load
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European Added Value Unit
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1.
Smart Load Solutions
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