LTE6100 User’s Guide
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H A P T E R
7
Quality of Service (QoS)
7.1 Overview
This chapter discusses the LTE Device’s QoS screens. Use these screens to set up your LTE Device
to use QoS for traffic management.
Quality of Service (QoS) refers to both a network’s ability to deliver data with minimum delay, and
the networking methods used to control the use of bandwidth. QoS allows the LTE Device to group
and prioritize application traffic and fine-tune network performance.
Without QoS, all traffic data is equally likely to be dropped when the network is congested. This can
cause a reduction in network performance and make the network inadequate for time-critical
application such as video-on-demand.
The LTE Device assigns each packet a priority and then queues the packet accordingly. Packets
assigned a high priority are processed more quickly than those with low priority if there is
congestion, allowing time-sensitive applications to flow more smoothly. Time-sensitive applications
include both those that require a low level of latency (delay) and a low level of jitter (variations in
delay) such as Internet gaming, and those for which jitter alone is a problem such as Internet radio
or streaming video.
7.1.1 What You Can Do in this Chapter
• Use the General screen to enable QoS, set the bandwidth, and allow the LTE Device to
automatically assign priority to upstream traffic according to the IP precedence or packet length
(
).
• Use the Queue Setup screen to configure QoS queue assignment (
• Use the Class Setup screen to set up classifiers to sort traffic into different flows and assign
priority and define actions to be performed for a classified traffic flow (
• Use the Monitor screen to view the LTE Device’s QoS-related packet statistics (
).
7.1.2 What You Need to Know
The following terms and concepts may help as you read this chapter.
QoS versus Cos
QoS is used to prioritize source-to-destination traffic flows. All packets in the same flow are given
the same priority. CoS (class of service) is a way of managing traffic in a network by grouping
similar types of traffic together and treating each type as a class. You can use CoS to give different
priorities to different packet types.
Содержание LTE6100
Страница 4: ...Contents Overview LTE6100 User s Guide 4...
Страница 11: ...11 PART I User s Guide...
Страница 12: ...12...
Страница 16: ...Chapter 1 Introduction LTE6100 User s Guide 16...
Страница 24: ...24...
Страница 30: ...Chapter 3 Connection Status and System Info LTE6100 User s Guide 30...
Страница 38: ...Chapter 4 Broadband LTE6100 User s Guide 38...
Страница 48: ...Chapter 6 Routing LTE6100 User s Guide 48...
Страница 66: ...Chapter 8 Network Address Translation NAT LTE6100 User s Guide 66...
Страница 78: ...Chapter 10 Firewall LTE6100 User s Guide 78...
Страница 84: ...Chapter 12 Parental Control LTE6100 User s Guide 84...
Страница 104: ...Chapter 15 Traffic Status LTE6100 User s Guide 104...
Страница 106: ...Chapter 16 User Account LTE6100 User s Guide 106...
Страница 120: ...Chapter 22 Backup Restore LTE6100 User s Guide 120...
Страница 122: ...Chapter 23 Diagnostic LTE6100 User s Guide 122...
Страница 166: ...Appendix B Setting Up Your Computer s IP Address LTE6100 User s Guide 166...
Страница 176: ...Appendix C Pop up Windows JavaScript and Java Permissions LTE6100 User s Guide 176...
Страница 180: ...Appendix D Common Services LTE6100 User s Guide 180...
Страница 184: ...Appendix E Legal Information LTE6100 User s Guide 184...
Страница 188: ...Index LTE6100 User s Guide 188...
Страница 189: ...Index LTE6100 User s Guide 189...