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In the vast expanse of the universe, the Doctor, a time-traveling alien from the planet Gallifrey, has encountered numerous civilizations, some of which have left an indelible mark on his adventures. One such place is Cytherea, a planet shrouded in mystery and the site of a fascinating, albeit unsettling, experiment known as the "Blind Experiment." This article aims to delve into the details of the Doctor's adventures on Cytherea, focusing on the top aspects of his visit and the enigmatic Blind Experiment.
The Cyderea Blind Experiment was a groundbreaking success, pushing the boundaries of human perception and understanding. Dr. Vex and her team emerged with a newfound appreciation for the interconnectedness of all living beings. As they returned to Earth, they carried with them the knowledge that the universe was full of hidden patterns and harmonies, waiting to be discovered.
The Doctor Adventures series (produced by Brazzers) is known for combining medical role-play with high-concept, often pseudo-scientific scenarios. One of its most discussed scenes features legendary performer (famed for her realistic, intense physical reactions) in a segment often referred to by fans as the "Blind Experiment." The scene stands out for its unique narrative twist and power dynamics, specifically with Cytherea playing a submissive yet central role—positioned as the "Top" subject of a clinical trial. doctor adventures cytherea blind experiment top
As the Doctor departed Cytherea, he reflected on the lessons learned. The universe was full of mysteries and wonders, but also dangers and uncertainties. His adventures on Cytherea served as a reminder that, in the face of the unknown, courage, compassion, and intelligence were the greatest tools of all.
Medical-themed adventures utilize the setting of a clinic or laboratory to establish a hierarchy. The "Doctor" figure represents knowledge and control, while the "Experiment" aspect introduces an element of the unknown. This dynamic is a staple in thriller and drama genres, where the sterile environment of a hospital provides a sharp contrast to the unpredictable nature of human experience. Sensory Deprivation in Storytelling In the vast expanse of the universe, the
The Cytherea protocol takes this adventurous spirit and introduces a structured, multi-layered "blind" variable. In a standard double-blind study, neither the patient nor the doctor knows who is receiving the active treatment or the placebo. In the top-tier Cytherea model, the blindness is environmental, diagnostic, and operational.
"Doctor Adventures" Blind Experiment (TV Episode 2015) - IMDb Episode aired Sep 1, 2015. The Doctor Adventures series (produced by Brazzers) is
The Doctor and their companions find themselves on Cytherea under the guise of being blind, without their usual array of advanced, sight-based technology. This could be part of an experiment by the Cythereans to understand the Doctor's species or a test to see if the Doctor can survive and learn from being reliant on senses other than sight.
For fans of the series looking for a blend of quality, intimacy, and narrative, the "Blind Experiment" episode featuring Cytherea is widely regarded as a must-watch.
The keyword demands a “blind experiment” within a “doctor adventures” framework featuring “Cytherea.” This suggests a radical premise: a medical researcher designs a top-tier (i.e., “top”) experiment to study the very essence of desire, using sensory deprivation as the independent variable. Subjects cannot see their partner, their surroundings, or the doctor’s true intent.
Cythera, a planet shrouded in mystery, was once home to a thriving civilization. However, its history took a dark turn when a group of scientists, led by the brilliant and reclusive Professor Lazarus, conducted a series of experiments on the planet's inhabitants. The goal of these experiments was to push the boundaries of human endurance and explore the limits of the human mind.
These are just old archives for recording. To download of the newest version, please visit the following GitHub links.
| Version | Date | Binary APs for Windows | Source Programs and Data |
| 2.4.2 p13 | 2018/01/29 | GitHub | GitHub |
| 2.4.3 b34 | 2020/12/29 | GitHub | GitHub |
The 2.4.2 pXX is the stable version with
the newest patches. The 2.4.3 bXX is the
development or beta version with experimental
implementations.
Please refer the support information for bug and known problem list.
GNSS-SDRLIB: Open Source GNSS Software Defined Radio Library (SDR working with RTKLIB)
Google play: RTKGPS+ (Android frontend of RTKLIB)
Overview
RTKLIB is an open source program package for standard and precise positioning with GNSS (global navigation satellite system). RTKLIB consists of a portable program library and several APs (application programs) utilizing the library. The features of RTKLIB are:
(1) It supports standard and precise positioning algorithms with:
GPS, GLONASS, Galileo, QZSS, BeiDou and SBAS
(2) It supports various positioning modes with GNSS for both real-time and post-processing:
Single, DGPS/DGNSS, Kinematic, Static, Moving-Baseline, Fixed, PPP-Kinematic, PPP-Staticand PPP-Fixed
(3) It supports many standard formats and protocols for GNSS:
RINEX 2.10, 2.11, 2.12 OBS/NAV/GNAV/HNAV/LNAV/QNAV, RINEX 3.00, 3.01, 3.02 OBS/NAV, RINEX 3.02 CLK, RTCM ver.2.3, RTCM ver.3.1 (with amendment 1-5), ver.3.2, BINEX, NTRIP 1.0, RTCA/DO-229C, NMEA 0183, SP3-c, ANTEX 1.4, IONEX 1.0, NGS PCV and EMS 2.0 (refer the Manual for details)
(4) It supports several GNSS receivers' proprietary messages:
NovAtel: OEM4/V/6, OEM3, OEMStar, Superstar II, Hemisphere: Eclipse, Crescent, u-blox: LEA-4T/5T/6T, SkyTraq: S1315F, JAVAD: GRIL/GREIS, Furuno: GW-10 II/III and NVS NV08C BINR (refer the Manual for details)
(6) It supports external communication via:Serial, TCP/IP, NTRIP, local log file (record and playback) and FTP/HTTP (automatic download)(7) It provides many library functions and APIs for GNSS data processing:
Satellite and navigation system functions, matrix and vector functions, time and string functions, coordinates transformation, input and output functions, debug trace functions, platform dependent functions, positioning models, atmosphere models, antenna models, earth tides models, geoid models, datum transformation, RINEX functions, ephemeris and clock functions, precise ephemeris and clock functions, receiver raw data functions, RTCM functions, solution functions, Google Earth KML converter, SBAS functions, options functions, stream data input and output functions, integer ambiguity resolution, standard positioning, precise positioning, post-processing positioning, stream server functions, RTK server functions, downloader functions
(8) It includes the following GUI and CUI APs:
| Function | GUI AP | CUI AP | Notes | |
| (a) | AP Launcher | RTKLAUNCH | - | |
| (b) | Real-Time Positioning | RTKNAVI | RTKRCV | |
| (c) | Communication Server | STRSVR | STR2STR | |
| (d) | Post-Processing Analysis | RTKPOST | RNX2RTKP | |
| (e) | RINEX Converter | RTKCONV | CONVBIN | |
| (f) | Plot Solutions and Observation Data | RTKPLOT | - | |
| (g) | Downloader of GNSS Data | RTKGET | - | |
| (h) | NTRIP Browser | SRCTBLBROWS | - |
(9) All of the executable binary APs for Windows are included in the package as well as whole source programs of the library and the APs.
System Requirement
The executable binary GUI and CUI APs included in the package require Microsoft Windows environment. On the other OS or environment, you have to compile and build CUI APs by yourself.
All of the library functions and APIs were written in ANSI C (C89). The library internally uses winsock and WIN32 thread for Windows with the compiler option -DWIN32 and the standard socket and pthread (POSIX thread) for Linux/UNIX without any option. By setting the compiler option -DLAPACK or -DMKL, the library uses LAPACK/BLAS or Intel MKL for fast matrix computation.
The CUI APs were written in ANSI C. The library and CUI APs can be built on many environments like gcc on Linux. The GUI APs were written in C++ and utilize Embarcadero/Borland VCL (visual component library) for GUI toolkits. All of the executable binary APs in the package were built by Embarcadero C++ builder XE2 Starter Edition on Windows 7. The executable GUI APs were tested on Windows 7 (64bit). The CUI APs were also built and tested on Ubuntu 11.04 Linux and x86 CPU.
Notes: Previous versions of RTKLIB until ver. 2.4.1 were built by a free edition of Borland C++ (Turbo C++ 2006). Turbo C++, however, is no longer supported in ver. 2.4.2 because of a type incompatibility problem of GUI strings between ver.2.4.2 and the previous ones.
License
The RTKLIB software package is distributed under the following BSD 2-clause license and additional exclusive clauses. Users are permitted to develop, produce or sell their own non-commercial or commercial products utilizing, linking or including RTKLIB as long as they comply with the license.
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Copyright (c) 2007-2013, T. Takasu, All rights reserved.
Redistribution and use in source and binary forms, with or without modification, are permitted provided that the following conditions are met:
- Redistributions of source code must retain the above copyright notice, this list of conditions and the following disclaimer.
- Redistributions in binary form must reproduce the above copyright notice, this list of conditions and the following disclaimer in the documentation and/or other materials provided with the distribution.
- The software package includes some companion executive binaries or shared libraries necessary to execute APs on Windows. These licenses succeed to the original ones of these software.
- (deleted) (2014/01/29)
THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
Notes: Previous versions of RTKLIB until ver. 2.4.1 had been distributed under GPLv3 license.
History
| Version | Date | Description |
|---|---|---|
| 1.0 | 2007/01/25 | New release |
| 1.1 | 2007/03/20 | Add rnx2rtkp_gui, fix bugs, improve performance. |
| 2.1.0 | 2008/07/15 | Refactored, add applications. |
| 2.1.1 | 2008/10/19 | Fix bugs. |
| 2.2.0 | 2009/01/31 | Add stream.c, rtksvr.c,preceph.c in src, Add rtknavi, rtkpost_mkl, srctblbrows, strsvr in app. |
| 2.2.1 | 2009/05/17 | See Release Notes |
| 2.2.2 | 2009/09/07 | See Release Notes |
| 2.3.0 | 2009/12/17 | See Release Notes |
| 2.4.0 | 2010/08/08 | See Release Notes |
| 2.4.1 | 2011/06/11 | See Release Notes |
| 2.4.1 | 2013/02/23 | An exclusive clause of the licence is added. |
| 2.4.2 | 2013 04/29 | See Release Notes |
Acknowledgement
The original code of src/rcv/nvs.c was provided by Michele Bavaro.

| Copyright (C) 2007-2013, T.TAKASU, All rights reserved. |