BCoT: Introduction to Blockchain-Based Internet …

19

42. Lu Q, Xu X (2017) Adaptable blockchain-based systems: a case study for product traceability.

IEEE Softw 34(6):21–27

43. Zhang Y, Wen J (2015) An IoT electric business model based on the protocol of bitcoin.

In: Proceedings of 18th international conference on intelligence in next generation networks

(ICIN), pp 184–191

44. He S, Xing C, Zhang L-J (2018) A business-oriented schema for blockchain network opera-

tion. In: Chen S, Wang H, Zhang L-J (eds) Blockchain—ICBC 2018. Springer International

Publishing, Cham, pp 277–284

45. Atzori L, Iera A, Morabito G (2010) The internet of things: a survey. Comput Netw

54(15):2787–2805

46. Jayavardhana G, Buyya R, Marusic S, Palaniswami M (2013) Internet of things (IoT): a

vision, architectural elements, and future directions.“ Future generation computer systems

29(7):1645–1660

47. Kevin A (2009) That ‘internet of things’ thing. RFID J 22(7):97–114

48. Sundmaeker H, Guillemin P, Friess P, Woelfflé S (2010) Vision and challenges for realizing

the internet of things, cluster of european research projects on the internet of things—CERP

IoT

49. Buckley J (ed) (2006) The internet of things: from RFID to the next-generation pervasive

networked systems. Auerbach Publications, New York

50. Dai H-N, Zheng Z, Zhang Y (2019) Blockchain for Internet of things: a survey. IEEE Int

Things J 6(5):8076–8094

51. Petersen S, Carlsen S (Dec 2011) WirelessHART versus ISA100.11a: the format war hits the

factory floor. IEEE Ind Electron Mag 5(4):23–34

52. Mekki K, Bajic E, Chaxel F, Meyer F (2018) A comparative study of LPWAN technologies

for large-scale IoT deployment. ICT Express

53. Bera S, Misra S, Vasilakos AV (Dec 2017) Software-defined networking for the internet of

things: a survey. IEEE Int Things J 4(6):1994–2008

54. Kalkan K, Zeadally S (September 2018) Securing internet of things with software-defined

networking. IEEE Commun Mag 56(9):186–192

55. Sharma PK, Singh S, Jeong Y, Park JH (2017) Distblocknet: a distributed blockchain-based

secure sdn architecture for IoT networks. IEEE Commun Mag 55(9):78–85

56. Alvarenga ID, Rebello GAF, Duarte OCMB (2018) Securing configuration management and

migration of virtual network functions using blockchain. In: NOMS 2018–2018 IEEE/IFIP

network operations and management symposium, April 2018, pp 1–9

57. Afolabi I, Taleb T, Samdanis K, Ksentini A, Flinck H (2018) Network slicing and Softwariza-

tion: a survey on principles, enabling technologies, and solutions. IEEE Commun Surv Tutor

20(3):2429–2453

58. Ghosh A, Das SK (2008) Coverage and connectivity issues in wireless sensor networks: a

survey. Pervasive Mob Comput 4:303–334

59. Ortega V, Bouchmal F, Monserrat JF (June 2018) Trusted 5g vehicular networks: Blockchains

and content-centric networking. IEEE Veh Technol Mag 13(2):121–127

60. Fan K, Ren Y, Wang Y, Li H, Yang Y (2018) Blockchain-based efficient privacy-preserving

and data sharing scheme of content-centric network in 5g. IET Commun 12(5):527–532

61. Chen C, Lin M, Liu C (2018) Edge computing gateway of the industrial internet of things

using multiple collaborative microcontrollers. IEEE Network 32(1):24–32

62. Banerjee P, Nath Mandal S, De D (2019) Biswajit Maiti. “i Sleep: thermal entropy aware

intelligent sleep scheduling algorithm for wireless sensor network. Microsystem Technol,

1–19

63. Xiong Z, Zhang Y, Niyato D, Wang P, Han Z (August 2018) When mobile Blockchain meets

edge computing. IEEE Commun Mag 56(8):33–39

64. Liu M, Yu FR, Teng Y, Leung VCM, Song M (2018) Computation offloading and content

caching in wireless blockchain networks with mobile edge computing. IEEE Trans Veh

Technol 67(11): 11008–11021