Concurrent Multipath Transfer Using SCTP Multihoming
Janardhan Iyengar
Abstract
Janardhan Iyengar
Abstract
Bibliography . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 115 This chapter investigates end-to-end Concurrent Multipath Transfer (CMT) using SCTP multihoming for increased application throughput and reliability. CMT is the simultaneous transfer of new data from a source host to a destination host via two or more end-to-end paths. Simultaneous transfer of new data to multiple destination addresses is a natural extension to SCTP multihoming, but there are several design considerations that we explore in this chapter.
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Bibliography . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 115 This chapter investigates end-to-end Concurrent Multipath Transfer (CMT) using SCTP multihoming for increased application throughput and reliability. CMT is the simultaneous transfer of new data from a source host to a destination host via two or more end-to-end paths. Simultaneous transfer of new data to multiple destination addresses is a natural extension to SCTP multihoming, but there are several design considerations that we explore in this chapter.
Key concepts: Multihoming, Stream Control Transmission Protocol, Computer science, Multipath propagation, Transfer (computing), Computer network, Parallel computing, World Wide Web