Скачать презентацию Introduction Introduction 16 10 2010 Cogden Hall SWAAG GPS Скачать презентацию Introduction Introduction 16 10 2010 Cogden Hall SWAAG GPS

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Introduction Introduction

Introduction 16/10/2010 Cogden Hall SWAAG GPS Survey Day with Trevor Photo: Ric Carter, SWAAG. Introduction 16/10/2010 Cogden Hall SWAAG GPS Survey Day with Trevor Photo: Ric Carter, SWAAG.

Introduction 16/10/2010 Trimble Data Cogden Hall Introduction 16/10/2010 Trimble Data Cogden Hall

Introduction 16/10/2010 SWAAG 60 CSx Data Cogden Hall Introduction 16/10/2010 SWAAG 60 CSx Data Cogden Hall

Introduction Combined SWAAG and Trimble Data Introduction Combined SWAAG and Trimble Data

Handheld GPSr devices Good handheld GPSr instruments have limitations but: • You will find Handheld GPSr devices Good handheld GPSr instruments have limitations but: • You will find that they are sufficiently accurate to create maps that reflect landscape and archaeological features. • You will see that it is possible to reflect earthworks down to least 4 or 5 metres across. • The maps generated will readily identify the features on the ground. • When familiar with the 2 stage mapping process, you can produce a map in an hour or two, depending on the complexity of the site. • The final map will be suitable for publication.

GPSr Accuracy • Measuring a fixed point repetitively with a Trimble type instrument, demonstrates GPSr Accuracy • Measuring a fixed point repetitively with a Trimble type instrument, demonstrates how much the measured co-ordinate for a fixed location varies with time. • Professional instruments use ‘correction factors’ for the general location and time of day, to correct each primary reading. • Handheld GPSr co-ordinates will always be relatively inaccurate in comparison.

GPSr Accuracy • Instruments like the Garmin units being used today can be configured GPSr Accuracy • Instruments like the Garmin units being used today can be configured to enable WAAS / EGNOS correction. (EGNOS is a European system currently not in use. ) • WAAS is a Federal Aviation Authority system which uses ground stations to constantly monitor accuracy and send correction factors to the satellites every 5 seconds. WAAS enabled GPSr’s then use these factors to correct the primary data. • This correction is not as accurate as the local UK correction factors used by professional instruments, but does theoretically improve data quality.

GPSr Accuracy Indicator 1. The accuracy as indicated on the handheld GPSr, and the GPSr Accuracy Indicator 1. The accuracy as indicated on the handheld GPSr, and the accuracy of the corrected Trimble data are in the order of 4 m and 1 cm respectively. 2. This value is an indication of the level of uncertainty of a waypoint’s measured position relative to the BNG. 3. It is not an index of how well a GPSr can measure one waypoint relative to the next, when waypoints are measured contemporaneously. 4. A good GPSr’s can measure the position of one waypoint relative to the next with adequate accuracy for generating maps.

GPSr Accuracy Indicator 5. This allows maps to be drawn with sufficiently accuracy for GPSr Accuracy Indicator 5. This allows maps to be drawn with sufficiently accuracy for the maps to be useful, whilst acknowledging that there will be up to a 4 m overall error relative to the BNG. 6. Features mapped from both sets of data will look very similar with the exception of the feature co-ordinates which may have up to a 4 m offset.

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GPS Receivers (GPSr) Buying Considerations 1. My GPS is Garmin GPSmap 60 CSx which GPS Receivers (GPSr) Buying Considerations 1. My GPS is Garmin GPSmap 60 CSx which has been superseded by the GPSmap 62 s. 2. Buy a ‘High-Sensitivity’ model which usually has an obvious aerial like the 60 CSx. 3. Do not buy a GPSr that records waypoints using multifunction ‘joy-stick’ or similar control buttons. 4. Buy a model which has specific Mark and Enter buttons for recording GPS Waypoints – you will pressing them hundreds of times. 5. Buy a model that has WAAS correction. 6. Must have a USB socket. 7. From a mapping point of view, there is no need to have any other map installed other than the basic map the unit comes with. 8. Preferably has an external aerial socket.

External Aerial NOTE: 1. How the GPS’s co-ordinates have changed as it stabilises from External Aerial NOTE: 1. How the GPS’s co-ordinates have changed as it stabilises from tuning it on. 2. How it stabilises more as the aerial has been attached. 3. How the altitude has changed to reflect the aerial position. 4. The GPS uses a circle to indicate the inaccuracy relative to the BNG.

The Software and OS Maps • The freeware used include: – – – – The Software and OS Maps • The freeware used include: – – – – Track. Maker Irfan. View Google Earth Easy GPS Ordnance Survey Open Data Cute. PDF writer and associated file converter (GPS Utility) • Commercial software – Serif’s Draw. Plus DP 8, X 2, X 3 (or X 4) See the SWAAG GPS Technology web pages for the download links

Waypoints uploaded from GPSr and into Track. Maker Waypoints uploaded from GPSr and into Track. Maker

Pre-mapping processing using Track. Maker Pre-mapping processing using Track. Maker

Pre-mapping processing using Track. Maker Pre-mapping processing using Track. Maker

Generating Maps from Track. Maker data using Draw. Plus Generating Maps from Track. Maker data using Draw. Plus

Mapping Scale a) Fit to page and add scale b) Set scale e. g. Mapping Scale a) Fit to page and add scale b) Set scale e. g. 1: 500 or 1: 1000 c) In DP at 200% Zoom d) 50 m grid width = e) 107. 2 mm @ 1: 500 f) 53. 6 mm @ 1: 1000 g) 26. 8 mm @1: 2000

Track. Maker data on OS Open. Data Maps: Street View 1: 10, 000 Track. Maker data on OS Open. Data Maps: Street View 1: 10, 000

Track. Maker Whole Site data on OS Street View 1: 10, 000 map Track. Maker Whole Site data on OS Street View 1: 10, 000 map

Track. Maker Whole Site data on Google Earth Track. Maker Whole Site data on Google Earth

Track. Maker Whole Site data added as an Overlay to an OS 1: 25, Track. Maker Whole Site data added as an Overlay to an OS 1: 25, 000 digital map within Memory-Map. Note positional errors as some red lines on modern road.

Using OS maps can show OS mapping errors Using OS maps can show OS mapping errors

OS Open. Data Civil Parish Boundaries OS Open. Data Civil Parish Boundaries

SWAAG Study Area: Civil Parish’s SWAAG Study Area: Civil Parish’s

Reeth Civil Parish SWAAG DATABASE Reeth Civil Parish SWAAG DATABASE

Easy. GPS Tabulated Data – Altitude Easy. GPS Tabulated Data – Altitude

Garmin GPSMap 60 CSx Altitude Data (In TM save file as. txt format and Garmin GPSMap 60 CSx Altitude Data (In TM save file as. txt format and import into Excel selecting a comma delimiter)

Hagg Farm Hagg Farm

GPSr Set-up Waypoint Measurement GPSr Set-up Waypoint Measurement

GPSr Accuracy Indicator. It is beneficial if your GPSr Map page can display data GPSr Accuracy Indicator. It is beneficial if your GPSr Map page can display data fields. The 60 CSx can display up to 4 fields. The data displayed for each field can be selected. Displaying Accuracy and Elevation is recommended (if your GPSr can measure altitude). Note Elevation is metric and Accuracy Imperial Units.

GPSr Set-up Waypoint Measurement • Enable WAAS/EGNOS correction GPSr Set-up Waypoint Measurement • Enable WAAS/EGNOS correction

OSGB 36 Datum • f. o. = false origin of the BNG, chosen so OSGB 36 Datum • f. o. = false origin of the BNG, chosen so all co-ordinates are positive numbers. • 1 st letter denotes the 500 km x 500 km square. • 2 nd letter denotes the 100 x 100 km square within the 500 km x 500 km square. • NZ 146 124 100 m x 100 m. • NZ 14610 12456 1 m x 1 m square. • 414641 512456 1 m x 1 m square. (British Uniform Grid: Track. Maker)

GPSr Measurement Recommendations • Always use freshly charged or new batteries. • Turn your GPSr Measurement Recommendations • Always use freshly charged or new batteries. • Turn your GPSr on 5+ minutes before using it. • Set the GPSr to indicate feet rather than metres, so that the current waypoint accuracy in feet is displayed. This gives you a more sensitive indication on how the GPSr is performing whilst taking measurements. • Display the GPSr map page zoomed in to the maximum setting (20 feet usually), with data fields for Accuracy and Altitude displayed. • Have an indicated accuracy figure as low as possible and preferably below 20 ft and ideally below 15 feet. Consider using an external aerial when the GPSr indicates an accuracy in excess of 20 feet. • Continued ….

GPSr Measurement Recommendations • Make at least 10+ waypoints around the boundary of small GPSr Measurement Recommendations • Make at least 10+ waypoints around the boundary of small features. Always holding the GPSr upright at chest height. • Before taking each waypoint measurement, watch the map indicator arrow on the GPSr unit (at maximum zoom in) until it has settled down. Usually about 5 -10 seconds. • In-between waypoint measurements keep the GPSr in the same position. If you drop your arms down or put the GPSr in your pocket, you must let it stabilise again at chest height before taking your next measurement. • Draw a plan view in the log so this can be compared with the waypoint data plot. • Continued ….

GPSr Measurement Recommendations • Take your time. Hurried measurements will lead to inaccuracy. • GPSr Measurement Recommendations • Take your time. Hurried measurements will lead to inaccuracy. • More measurements is always better than fewer. • Remember proximity to trees, buildings, hillsides can degrade your readings. Consider using external aerial when Accuracy > 20 ft. • Log what you are measuring. • Cross-reference any images taken in the log with waypoint numbers

Just before we have coffee and go the Hagg Farm Just before we have coffee and go the Hagg Farm

Google Earth Historical View Google Earth Historical View

Hagg Farm Hagg Farm

Coffee then on to Hagg Farm Coffee then on to Hagg Farm