Safety of 5G Network Physical Infrastructures 193
41 ASCE (2010) ASCE 7–10 – Minimum Design Loads for Buildings and Other Structures,
American Society of Civil Engineers (ASCE), USA.
42 SAA (2011) AS 1170.2:2011 – Structural Design Actions – Part 2: Wind actions, Standards
Association of Australia (SAA), Australia.
43 Beale, R. and André, J. (2017) Structural analysis. In: Design Solutions and Innovations
in Temporary Structures, IGI Global, Pennsylvania.
44 BSI (2005) BS EN 1993–1–1:2005 – Design of Steel Structures – Part 1–1: General rules
and rules for buildings, British Standards Institution (BSI), London.
45 BSI (2008) UK National Annex to BS EN 1993–1–1:2005, British Standards Institution
(BSI), London.
46 BSI (2007) BS EN 1993–1–6:2007 – Design of Steel Structures – Part 1–6: Strength and
stability of shell structures, British Standards Institution (BSI), London.
47 BSI (2008) UK National Annex to BS EN 1993–1–8:2005, British Standards Institution
(BSI), London.
48 BSI (2005) BS EN 1993–1–8:2005 – Design of Steel Structures – Part 1–8: Design of joints,
British Standards Institution (BSI), London.
49 BSI (2005) BS EN 1993–1–9:2005 – Design of Steel Structures – Part 1–9: Fatigue,
British Standards Institution (BSI), London.
50 BSI (2008) UK National Annex to BS EN 1993–1–9:2005, British Standards Institution
(BSI), London.
51 HERA (2001) DCB 65, 66, 67, 78. Heavy Engineering Research Association, Auckland,
New Zealand.
52 André, J. and Pipa, M. (2011) Technical Specifications and Provisions for the Design of
Telecommunication Towers (in Portuguese). Laboratório Nacional de Engenharia Civil
(LNEC), Lisbon, Portugal, 75 pp.
53 ACI (2011) ACI 355.3R–11 – Guide for Design of Anchorage to Concrete: Examples
using ACI 318 Appendix D, American Concrete Institute (ACI), Washington, DC.
54 ACI (2014) ACI 318–14 – Building Code Requirements for Structural Concrete and
Commentary, American Concrete Institute (ACI), Washington DC.
55 CEN (2009) CEN/TS 1992–4:2009 – Design of Fastenings for Use in Concrete – Parts
1–5, European Committee for Standardization (CEN), Brussels.
56 EOTA (2013) ETAG 001: Metal Anchors for Use in Concrete – Parts 1–6, European
Organisation for Technical Assessment (EOTA), Brussels.
57 EOTA (2013) ETAG 029: Metal injection Anchors for Use in Masonry, European
Organisation for Technical Assessment (EOTA), Brussels
58 BSI (2013) BS EN 1997–1:2004 + A1:2013 – Geotechnical Design – Part 1: General rules,
British Standards Institution (BSI), London.
59 BSI (2014) UK National Annex to BS EN 1997–1:2004 + A1:2013, British Standards
Institution (BSI), London.
60 Repetto, M., and Solari, G. (2010) Wind‐induced Fatigue Collapse of Real Slender
Structures. Engineering Structures, 32(12), 3888–3898.
61 Auerswald, P., Branscomb, L., La Porte, T. and Michel‐Kerjan, E. (2005) The challenge
of protecting critical infrastructure. Issues Sci. Technol., 22(1).
62 André, J., Beale, R. and Baptista, A. (2015) New indices of structural robustness and
structural fragility. Struct. Eng. Mech., 56(6), 1063–1093.
41 ASCE (2010) ASCE 7–10 – Minimum Design Loads for Buildings and Other Structures,
American Society of Civil Engineers (ASCE), USA.
42 SAA (2011) AS 1170.2:2011 – Structural Design Actions – Part 2: Wind actions, Standards
Association of Australia (SAA), Australia.
43 Beale, R. and André, J. (2017) Structural analysis. In: Design Solutions and Innovations
in Temporary Structures, IGI Global, Pennsylvania.
44 BSI (2005) BS EN 1993–1–1:2005 – Design of Steel Structures – Part 1–1: General rules
and rules for buildings, British Standards Institution (BSI), London.
45 BSI (2008) UK National Annex to BS EN 1993–1–1:2005, British Standards Institution
(BSI), London.
46 BSI (2007) BS EN 1993–1–6:2007 – Design of Steel Structures – Part 1–6: Strength and
stability of shell structures, British Standards Institution (BSI), London.
47 BSI (2008) UK National Annex to BS EN 1993–1–8:2005, British Standards Institution
(BSI), London.
48 BSI (2005) BS EN 1993–1–8:2005 – Design of Steel Structures – Part 1–8: Design of joints,
British Standards Institution (BSI), London.
49 BSI (2005) BS EN 1993–1–9:2005 – Design of Steel Structures – Part 1–9: Fatigue,
British Standards Institution (BSI), London.
50 BSI (2008) UK National Annex to BS EN 1993–1–9:2005, British Standards Institution
(BSI), London.
51 HERA (2001) DCB 65, 66, 67, 78. Heavy Engineering Research Association, Auckland,
New Zealand.
52 André, J. and Pipa, M. (2011) Technical Specifications and Provisions for the Design of
Telecommunication Towers (in Portuguese). Laboratório Nacional de Engenharia Civil
(LNEC), Lisbon, Portugal, 75 pp.
53 ACI (2011) ACI 355.3R–11 – Guide for Design of Anchorage to Concrete: Examples
using ACI 318 Appendix D, American Concrete Institute (ACI), Washington, DC.
54 ACI (2014) ACI 318–14 – Building Code Requirements for Structural Concrete and
Commentary, American Concrete Institute (ACI), Washington DC.
55 CEN (2009) CEN/TS 1992–4:2009 – Design of Fastenings for Use in Concrete – Parts
1–5, European Committee for Standardization (CEN), Brussels.
56 EOTA (2013) ETAG 001: Metal Anchors for Use in Concrete – Parts 1–6, European
Organisation for Technical Assessment (EOTA), Brussels.
57 EOTA (2013) ETAG 029: Metal injection Anchors for Use in Masonry, European
Organisation for Technical Assessment (EOTA), Brussels
58 BSI (2013) BS EN 1997–1:2004 + A1:2013 – Geotechnical Design – Part 1: General rules,
British Standards Institution (BSI), London.
59 BSI (2014) UK National Annex to BS EN 1997–1:2004 + A1:2013, British Standards
Institution (BSI), London.
60 Repetto, M., and Solari, G. (2010) Wind‐induced Fatigue Collapse of Real Slender
Structures. Engineering Structures, 32(12), 3888–3898.
61 Auerswald, P., Branscomb, L., La Porte, T. and Michel‐Kerjan, E. (2005) The challenge
of protecting critical infrastructure. Issues Sci. Technol., 22(1).
62 André, J., Beale, R. and Baptista, A. (2015) New indices of structural robustness and
structural fragility. Struct. Eng. Mech., 56(6), 1063–1093.
